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<RECORD><REFERENCE_TYPE>5</REFERENCE_TYPE><REFNUM>341</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2000</YEAR><TITLE>Deterministic chaos in two state-variable friction sliders and the effect of elastic interactions</TITLE><SECONDARY_TITLE>GeoComplexity and the Physics of Earthquakes</SECONDARY_TITLE><PLACE_PUBLISHED>Washington, DC</PLACE_PUBLISHED><PUBLISHER>American Geophysical Union</PUBLISHER><VOLUME>120</VOLUME><PAGES>5-26</PAGES><ALTERNATE_TITLE>Geophys. Mono.</ALTERNATE_TITLE><LABEL>becker00</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>342</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Boschi, L.</AUTHOR></AUTHORS><YEAR>2002</YEAR><TITLE>A comparison of tomographic and geodynamic mantle models</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>3</VOLUME><NUMBER>1</NUMBER><LABEL>becker01a</LABEL><URL>10.1029/2001GC000168</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>343</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR></AUTHORS><YEAR>2001</YEAR><TITLE>Predicting plate velocities with geodynamic models</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>2</VOLUME><NUMBER>12</NUMBER><LABEL>becker01b</LABEL><URL>10.1029/2001GC000171</URL></RECORD>
<RECORD><REFERENCE_TYPE>47</REFERENCE_TYPE><REFNUM>344</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR></AUTHORS><YEAR>2001</YEAR><TITLE>Lithospheric stresses caused by mantle convection: The role of plate rheology</TITLE><SECONDARY_TITLE>Workshop on numerical modeling of mantle convection and lithospheric dynamics</SECONDARY_TITLE><PLACE_PUBLISHED>Aussois, France</PLACE_PUBLISHED><LABEL>becker01c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>345</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR></AUTHORS><YEAR>2001</YEAR><TITLE>Lithospheric stresses caused by mantle convection: The role of plate rheology (abstract)</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><VOLUME>82</VOLUME><NUMBER>47</NUMBER><PAGES>T12C-0921</PAGES><LABEL>becker01d</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>2</REFERENCE_TYPE><REFNUM>347</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2002</YEAR><TITLE>Lithosphere-Mantle Interactions</TITLE><PLACE_PUBLISHED>Cambridge MA</PLACE_PUBLISHED><PUBLISHER>Harvard University</PUBLISHER><LABEL>becker02b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>2</REFERENCE_TYPE><REFNUM>348</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2002</YEAR><TITLE>Lithosphere-Mantle Interactions</TITLE><PLACE_PUBLISHED>Cambridge MA</PLACE_PUBLISHED><PUBLISHER>Harvard University</PUBLISHER><LABEL>becker02b_url</LABEL><NOTES>Available at twb.ig.utexas.edu/thesis.tp.times10.pdf</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>349</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Schott, B.</AUTHOR></AUTHORS><YEAR>2002</YEAR><TITLE>On boundary-element models of elastic fault interaction (abstract)</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><VOLUME>83</VOLUME><NUMBER>47</NUMBER><PAGES>NG62A-0925</PAGES><LABEL>becker02c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>350</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Kellogg, J. B.</AUTHOR><AUTHOR>Ekstr&#x00F6;m, G.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR></AUTHORS><YEAR>2003</YEAR><TITLE>Comparison of azimuthal seismic anisotropy from surface waves and finite-strain from global mantle-circulation models</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>155</VOLUME><PAGES>696-714</PAGES><LABEL>becker03</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>351</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Blackman, D. K.</AUTHOR><AUTHOR>Schulte-Pelkum, V.</AUTHOR></AUTHORS><YEAR>2004</YEAR><TITLE>Seismic anisotropy in the western US as a testbed for advancing combined models of upper mantle geodynamics and texturing (abstract)</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><VOLUME>85</VOLUME><NUMBER>47</NUMBER><PAGES>T33A-1338</PAGES><LABEL>becker04</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>352</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Hardebeck, J. L.</AUTHOR><AUTHOR>Anderson, G.</AUTHOR></AUTHORS><YEAR>2005</YEAR><TITLE>Constraints on fault slip rates of the southern California plate boundary from GPS velocity and stress inversions</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>160</VOLUME><PAGES>634-650</PAGES><LABEL>becker05</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>353</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2006</YEAR><TITLE>On the effect of temperature and strain-rate dependent viscosity on global mantle flow, net rotation, and plate-driving forces</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>167</VOLUME><PAGES>943-957</PAGES><LABEL>becker06</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>10</REFERENCE_TYPE><REFNUM>354</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>CIG Global Flow Code Benchmark Group, the</AUTHOR></AUTHORS><YEAR>2006</YEAR><TITLE>Global spectral flow code benchmark and development plan</TITLE><PUBLISHER>University of Southern California</PUBLISHER><LABEL>becker06b</LABEL><NOTES> twb.ig.utexas.edu/flow_code_project.051706.pdf</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>355</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Chevrot, S.</AUTHOR><AUTHOR>Schulte-Pelkum, V.</AUTHOR><AUTHOR>Blackman, D. K.</AUTHOR></AUTHORS><YEAR>2006</YEAR><TITLE>Statistical properties of seismic anisotropy predicted by upper mantle geodynamic models</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>111</VOLUME><NUMBER>B08309</NUMBER><LABEL>becker06d</LABEL><URL>10.1029/2005JB004095</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>356</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Schulte-Pelkum, V.</AUTHOR><AUTHOR>Blackman, D. K.</AUTHOR><AUTHOR>Kellogg, J. B.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR></AUTHORS><YEAR>2006</YEAR><TITLE>Mantle flow under the western United States from shear wave splitting</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>247</VOLUME><PAGES>235-251</PAGES><LABEL>becker06e</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>13</REFERENCE_TYPE><REFNUM>357</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2006</YEAR><TITLE>Stress and strain in southern California</TITLE><LABEL>becker06k</LABEL><NOTES>Invited presentation at the \em Southern California Earthquake Center Annual Meeting</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>358</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Browaeys, J. T.</AUTHOR><AUTHOR>Jordan, T. H.</AUTHOR></AUTHORS><YEAR>2007</YEAR><TITLE>Stochastic Analysis of Shear Wave Splitting Length Scales</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>259</VOLUME><PAGES>29-36</PAGES><LABEL>becker07</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>359</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2008</YEAR><TITLE>Azimuthal seismic anisotropy constrains net rotation of the lithosphere</TITLE><SECONDARY_TITLE>Geophys. Res. Lett.</SECONDARY_TITLE><VOLUME>35</VOLUME><NUMBER>L05303</NUMBER><LABEL>becker07e</LABEL><NOTES>correction: doi:10.1029/2008GL033946</NOTES><URL>10.1029/2007GL032928</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>360</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Ekstr&#x00F6;m, G.</AUTHOR><AUTHOR>Boschi, L.</AUTHOR><AUTHOR>Woodhouse, J.</AUTHOR></AUTHORS><YEAR>2007</YEAR><TITLE>Length scales, patterns, and origin of azimuthal seismic anisotropy in the upper mantle as mapped by Rayleigh waves</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>171</VOLUME><PAGES>451-462</PAGES><LABEL>becker07f</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>361</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Kustowski, B.</AUTHOR><AUTHOR>Ekstr&#x00F6;m, G.</AUTHOR></AUTHORS><YEAR>2008</YEAR><TITLE>Radial seismic anisotropy as a constraint for upper mantle rheology</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>267</VOLUME><PAGES>213-237</PAGES><LABEL>becker08</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>362</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Conrad, C. P.</AUTHOR><AUTHOR>Buffett, B. A.</AUTHOR><AUTHOR>M&#x00FC;ller, R. D.</AUTHOR></AUTHORS><YEAR>2009</YEAR><TITLE>Past and present seafloor age distributions and the temporal evolution of plate tectonic heat transport</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>278</VOLUME><PAGES>233-242</PAGES><LABEL>becker09</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>16</REFERENCE_TYPE><REFNUM>363</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Steinberger, B.</AUTHOR><AUTHOR>O'Neill, C.</AUTHOR></AUTHORS><YEAR>2009</YEAR><TITLE>HC - A global mantle circulation solver following \citehager81 and \citesteinberger00a</TITLE><LABEL>becker09b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>5</REFERENCE_TYPE><REFNUM>364</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Faccenna, C.</AUTHOR></AUTHORS><YEAR>2009</YEAR><TITLE>A review of the role of subduction dynamics for regional and global plate motions</TITLE><SECONDARY_TITLE>Subduction Zone Geodynamics</SECONDARY_TITLE><PLACE_PUBLISHED>Berlin</PLACE_PUBLISHED><PUBLISHER>Springer</PUBLISHER><PAGES>3-34</PAGES><ALTERNATE_TITLE>Frontiers in Earth Sciences</ALTERNATE_TITLE><LABEL>becker09c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>365</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2010</YEAR><TITLE>Fine-scale modeling of global plate tectonics</TITLE><SECONDARY_TITLE>Science</SECONDARY_TITLE><VOLUME>329</VOLUME><PAGES>1020-1021</PAGES><LABEL>becker10a</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>366</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Miller, M. S.</AUTHOR></AUTHORS><YEAR>2010</YEAR><TITLE>Caribbean slab-craton interactions constrained by shear wave splitting (abstract)</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><VOLUME>91</VOLUME><NUMBER>26</NUMBER><PAGES>T43A-06</PAGES><LABEL>becker10d</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>5</REFERENCE_TYPE><REFNUM>367</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2011</YEAR><TITLE>Seismic anisotropy</TITLE><SECONDARY_TITLE>Encyclopedia of Solid Earth Geophysics</SECONDARY_TITLE><PUBLISHER>Springer</PUBLISHER><LABEL>becker11</LABEL><URL>10.1007/978-90-481-8702-7</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>368</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Kawakatsu, H.</AUTHOR></AUTHORS><YEAR>2011</YEAR><TITLE>On the role of anisotropic viscosity for plate-scale flow</TITLE><SECONDARY_TITLE>Geophys. Res. Lett.</SECONDARY_TITLE><VOLUME>38</VOLUME><NUMBER>L17307</NUMBER><LABEL>becker11b</LABEL><URL>10.1029/2011GL048584</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>369</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Faccenna, C.</AUTHOR></AUTHORS><YEAR>2011</YEAR><TITLE>Mantle conveyor beneath the Tethyan collisional belt</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>310</VOLUME><PAGES>453-461</PAGES><LABEL>becker11c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>370</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2012</YEAR><TITLE>On recent seismic tomography for the western United States</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>13</VOLUME><NUMBER>Q01W10</NUMBER><LABEL>becker12b</LABEL><URL>10.1029/2011GC003977</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>371</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Lebedev, S.</AUTHOR><AUTHOR>Long, M. D.</AUTHOR></AUTHORS><YEAR>2012</YEAR><TITLE>On the relationship between azimuthal anisotropy from shear wave splitting and surface wave tomography</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>117</VOLUME><NUMBER>B01306</NUMBER><LABEL>becker12c</LABEL><NOTES>Original and updated splitting data base at twb.ig.utexas.edu/sksdata.html</NOTES><URL>10.1029/2011JB008705</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>372</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Lebedev, S.</AUTHOR><AUTHOR>Long, M. D.</AUTHOR></AUTHORS><YEAR>2012</YEAR><TITLE>On the relationship between azimuthal anisotropy from shear wave splitting and surface wave tomography</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>117</VOLUME><NUMBER>B01306</NUMBER><LABEL>becker12c_wourl</LABEL><URL>10.1029/2011JB008705</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>373</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Faccenna, C.</AUTHOR><AUTHOR>Humphreys, E. D.</AUTHOR><AUTHOR>Lowry, A. R.</AUTHOR><AUTHOR>Miller, M. S.</AUTHOR></AUTHORS><YEAR>2014</YEAR><TITLE>Static and dynamic support of western U.S. topography</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>402</VOLUME><PAGES>234-246</PAGES><LABEL>becker14</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>374</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Conrad, C. P.</AUTHOR><AUTHOR>Schaeffer, A. J.</AUTHOR><AUTHOR>Lebedev, S.</AUTHOR></AUTHORS><YEAR>2014</YEAR><TITLE>Origin of azimuthal seismic anisotropy in oceanic plates and mantle</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>401</VOLUME><PAGES>236-250</PAGES><LABEL>becker14b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>375</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Lowry, A. R.</AUTHOR><AUTHOR>Faccenna, C.</AUTHOR><AUTHOR>Schmandt, B.</AUTHOR><AUTHOR>Borsa, A.</AUTHOR><AUTHOR>Yu, C</AUTHOR></AUTHORS><YEAR>2015</YEAR><TITLE>Western U.S. intermountain seismicity caused by changes in upper mantle flow</TITLE><SECONDARY_TITLE>Nature</SECONDARY_TITLE><VOLUME>524</VOLUME><PAGES>458-461</PAGES><LABEL>becker15</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>376</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Schaeffer, A. J.</AUTHOR><AUTHOR>Lebedev, S.</AUTHOR><AUTHOR>Conrad, C. P.</AUTHOR></AUTHORS><YEAR>2015</YEAR><TITLE>Implications of a comprehensive, spreading-aligned plate motion reference frame in light of seismic anisotropy and global trench migration (abstract)</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><NUMBER>DI13C-01</NUMBER><LABEL>becker15_agu</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>377</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Schaeffer, A. J.</AUTHOR><AUTHOR>Lebedev, S.</AUTHOR><AUTHOR>Conrad, S. P.</AUTHOR></AUTHORS><YEAR>2015</YEAR><TITLE>Toward a generalized plate motion reference frame</TITLE><SECONDARY_TITLE>Geophys. Res. Lett.</SECONDARY_TITLE><VOLUME>42</VOLUME><PAGES>3188-3196</PAGES><LABEL>becker15b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>378</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2017</YEAR><TITLE>Superweak asthenosphere in light of upper-mantle seismic anisotropy</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>18</VOLUME><PAGES>1986-2003</PAGES><LABEL>becker17</LABEL><URL>10.1002/2017GC006886</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>379</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Wang, W.</AUTHOR></AUTHORS><YEAR>2017</YEAR><TITLE>Dissonance and harmony between global and regional-scale seismic anisotropy and mantle dynamics (abstract)</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><LABEL>becker17b</LABEL><NOTES>AGU Fall Meeting, New Orleans</NOTES><URL>10.1002/2017GC006886</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>380</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Hashima, A.</AUTHOR><AUTHOR>Freed, A. M.</AUTHOR><AUTHOR>Sato., H.</AUTHOR></AUTHORS><YEAR>2018</YEAR><TITLE>Stress change before and after the 2011 M9 Tohoku-oki earthquake</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>504</VOLUME><PAGES>174-184</PAGES><LABEL>becker18</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>5</REFERENCE_TYPE><REFNUM>381</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Lebedev, S.</AUTHOR></AUTHORS><YEAR>2020</YEAR><TITLE>Dynamics of the lithosphere and upper mantle in light of seismic anisotropy</TITLE><SECONDARY_TITLE>Mantle Convection and Surface Expressions</SECONDARY_TITLE><PLACE_PUBLISHED>Washington DC</PLACE_PUBLISHED><PUBLISHER>American Geophysical Union</PUBLISHER><LABEL>becker20b</LABEL><URL>10.1002/9781119528609.ch10</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>382</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Fuchs, L.</AUTHOR></AUTHORS><YEAR>2023</YEAR><TITLE>Generation of evolving plate boundaries and toroidal flow from visco-plastic damage-rheology mantle convection and continents</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>24</VOLUME><LABEL>becker23</LABEL><URL>10.1029/2023GC011179</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>383</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Fuchs, L.</AUTHOR></AUTHORS><YEAR>2023</YEAR><TITLE>Input files and movie visualizations for convection models discussed in Becker and Fuchs, ``Generation of evolving plate boundaries and toroidal flow from visco-plastic damage-rheology mantle convection and continents'', manuscript revised for G-Cubed [Dataset]</TITLE><SECONDARY_TITLE>Zenodo</SECONDARY_TITLE><LABEL>becker23input</LABEL><URL>10.5281/zenodo.10070094</URL></RECORD>
<RECORD><REFERENCE_TYPE>1</REFERENCE_TYPE><REFNUM>384</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Faccenna, C.</AUTHOR></AUTHORS><YEAR>2024</YEAR><TITLE>Tectonic Geodynamics (lecture notes)</TITLE><PUBLISHER>The University of Texas at Austin</PUBLISHER><LABEL>becker24</LABEL><NOTES>p. 764, www-udc.ig.utexas.edu/external/becker/preprints/tectonic_geodynamics_draft.pdf</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>16</REFERENCE_TYPE><REFNUM>385</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2024</YEAR><TITLE>Visualizations</TITLE><LABEL>becker24b</LABEL><NOTES>web page with animations and illustrations</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>47</REFERENCE_TYPE><REFNUM>386</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Schmeling, H.</AUTHOR></AUTHORS><YEAR>1996</YEAR><TITLE>Finite-Elemente-Modellierung von Faultpopulationen</TITLE><SECONDARY_TITLE>DGG Tagung 1996</SECONDARY_TITLE><PLACE_PUBLISHED>Freiberg/Sachsen</PLACE_PUBLISHED><PUBLISHER>Deutsche Geophysikalische Gesellschaft</PUBLISHER><LABEL>becker96</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>47</REFERENCE_TYPE><REFNUM>387</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Schmeling, H.</AUTHOR></AUTHORS><YEAR>1997</YEAR><TITLE>Finite Element Modeling of Fault Zone Interactions</TITLE><SECONDARY_TITLE>EUG9 abstracts</SECONDARY_TITLE><PLACE_PUBLISHED>Strassburg</PLACE_PUBLISHED><PUBLISHER>European Union of Geosciences</PUBLISHER><LABEL>becker97c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>47</REFERENCE_TYPE><REFNUM>388</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Schmeling, H.</AUTHOR></AUTHORS><YEAR>1997</YEAR><TITLE>Finite-Elemente-Modellierung von Faultpopulationen</TITLE><SECONDARY_TITLE>DGG Tagung 1997</SECONDARY_TITLE><PLACE_PUBLISHED>Potsdam</PLACE_PUBLISHED><PUBLISHER>Deutsche Geophysikalische Gesellschaft</PUBLISHER><LABEL>becker97d</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>47</REFERENCE_TYPE><REFNUM>389</REFNUM><AUTHORS><AUTHOR>Dahm, T.</AUTHOR><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>1997</YEAR><TITLE>The elastic and viscous properties of highly fractured media</TITLE><SECONDARY_TITLE>EGS 1997 abstracts</SECONDARY_TITLE><PLACE_PUBLISHED>Wien</PLACE_PUBLISHED><PUBLISHER>European Geophysical Society</PUBLISHER><LABEL>becker97e</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>390</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Schmeling, H.</AUTHOR></AUTHORS><YEAR>1998</YEAR><TITLE>Earthquake recurrence time variations with and without fault zone interactions</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>135</VOLUME><PAGES>165-176</PAGES><LABEL>becker98</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>391</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Faccenna, C.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR></AUTHORS><YEAR>1998</YEAR><TITLE>The development of slabs in the upper mantle: insight from numerical and laboratory experiments (abstract)</TITLE><SECONDARY_TITLE>EOS, Trans. AGU</SECONDARY_TITLE><VOLUME>79</VOLUME><PAGES>S349</PAGES><LABEL>becker98c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>392</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Faccenna, C.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR></AUTHORS><YEAR>1998</YEAR><TITLE>Mantle winds and back-arc spreading: the influence of background flow on subdution in the upper mantle (abstract)</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><VOLUME>79</VOLUME><PAGES>F849</PAGES><LABEL>becker98d</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>393</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Panasyuk, S. V.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR><AUTHOR>Faccenna, C.</AUTHOR></AUTHORS><YEAR>1999</YEAR><TITLE>The backward-bent Indonesia slab</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><VOLUME>80</VOLUME><PAGES>S18</PAGES><LABEL>becker98dd</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>394</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Kellogg, J. B.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR></AUTHORS><YEAR>1998</YEAR><TITLE>Thermal constraints on the survival of primitive blobs in the lower mantle (abstract)</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><VOLUME>79</VOLUME><PAGES>F599</PAGES><LABEL>becker98e</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>395</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Braun, A.</AUTHOR></AUTHORS><YEAR>1998</YEAR><TITLE>New program maps geoscientific data sets interactively</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><VOLUME>79</VOLUME><PAGES>505</PAGES><LABEL>becker98g</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>396</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Faccenna, C.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR><AUTHOR>Giardini, D.</AUTHOR></AUTHORS><YEAR>1999</YEAR><TITLE>The development of slabs in the upper mantle: insight from numerical and laboratory experiments</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>104</VOLUME><PAGES>15207-15225</PAGES><LABEL>becker99</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>397</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Kellogg, J. B.</AUTHOR><AUTHOR>O'Connell, R. J.</AUTHOR></AUTHORS><YEAR>1999</YEAR><TITLE>Thermal constraints on the survival of primitive blobs in the lower mantle</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>171</VOLUME><PAGES>351</PAGES><LABEL>becker99b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>13</REFERENCE_TYPE><REFNUM>398</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>1999</YEAR><TITLE>On the spherical harmonic expansion of discontinuities on the Earth's surface</TITLE><LABEL>becker99x</LABEL><NOTES>Final project for Harvard University course EPS202 ``Inverse Theory'' by Prof1 A1 M.\ Dziewo\'nski</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>1</REFERENCE_TYPE><REFNUM>399</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>1997</YEAR><TITLE>Finite Element Modeling of Fault Zone Interactions</TITLE><PLACE_PUBLISHED>Frankfurt am Main</PLACE_PUBLISHED><PUBLISHER>Institut f&#x00FC;r Meteorologie und Geophysik der J.W.Goethe-Universit&#x00E4;t</PUBLISHER><ALTERNATE_TITLE>Diploma thesis</ALTERNATE_TITLE><LABEL>beckere</LABEL><NOTES>(In German)</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>1</REFERENCE_TYPE><REFNUM>400</REFNUM><AUTHORS><AUTHOR>Becker, T. W.</AUTHOR><AUTHOR>Kaus, B. J. P.</AUTHOR></AUTHORS><YEAR>2015</YEAR><TITLE>Numerical Modeling of Earth Systems. An Introduction to Computational Methods with Focus on Solid Earth Applications of Continuum Mechanics</TITLE><PLACE_PUBLISHED>Los Angeles</PLACE_PUBLISHED><PUBLISHER>University of Southern California</PUBLISHER><LABEL>beckerkaus14</LABEL><NOTES>Updated Lecture Notes (2020, 222 pages), twb.ig.utexas.edu/Geodynamics557.pdf</NOTES><URL>10.6084/m9.figshare.1555628</URL></RECORD>
<RECORD><REFERENCE_TYPE>16</REFERENCE_TYPE><REFNUM>401</REFNUM><AUTHORS><AUTHOR>Liu, D.</AUTHOR><AUTHOR>Milner, K.</AUTHOR><AUTHOR>Becker, T. W.</AUTHOR></AUTHORS><YEAR>2025</YEAR><TITLE>SEATREE - Solid Earth Teaching and Research Environment</TITLE><LABEL>beckerliu25</LABEL><NOTES>GitHub repository with updated SEATREE package \citepmilner09</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>402</REFNUM><AUTHORS><AUTHOR>Beeler, Nicholas M</AUTHOR><AUTHOR>Roeloffs, Evelyn</AUTHOR><AUTHOR>McCausland, Wendy</AUTHOR></AUTHORS><YEAR>2014</YEAR><TITLE>Re-estimated effects of deep episodic slip on the occurrence and probability of great earthquakes in Cascadia</TITLE><SECONDARY_TITLE>Bull. Seismol. Soc. Am.</SECONDARY_TITLE><VOLUME>104</VOLUME><PAGES>128-144</PAGES><LABEL>beeler14</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>403</REFNUM><AUTHORS><AUTHOR>Beeler, Nicholas M</AUTHOR></AUTHORS><YEAR>2023</YEAR><TITLE>On the scale-dependence of fault surface roughness</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>128</VOLUME><PAGES>e2022JB024856</PAGES><LABEL>beeler23</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>404</REFNUM><AUTHORS><AUTHOR>Beeler, N. M.</AUTHOR><AUTHOR>Tullis, T. E.</AUTHOR><AUTHOR>Weeks, J. D.</AUTHOR></AUTHORS><YEAR>1994</YEAR><TITLE>The roles of time and displacement in the evolution effect in rock friction</TITLE><SECONDARY_TITLE>Geophys. Res. Lett.</SECONDARY_TITLE><VOLUME>21</VOLUME><PAGES>1987-1990</PAGES><LABEL>beeler94</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>405</REFNUM><AUTHORS><AUTHOR>Beghein, C.</AUTHOR><AUTHOR>Trampert, J.</AUTHOR></AUTHORS><YEAR>2003</YEAR><TITLE>Probability density functions for radial anisotropy: implications for the upper 1201 km of the mantle</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>217</VOLUME><PAGES>151-162</PAGES><LABEL>beghein03</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>406</REFNUM><AUTHORS><AUTHOR>Beghein, C.</AUTHOR><AUTHOR>Trampert, J.</AUTHOR></AUTHORS><YEAR>2003</YEAR><TITLE>Robust normal mode constraints on inner-core anisotropy from model space search</TITLE><SECONDARY_TITLE>Science</SECONDARY_TITLE><VOLUME>299</VOLUME><PAGES>552-555</PAGES><LABEL>beghein03b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>407</REFNUM><AUTHORS><AUTHOR>Beghein, C.</AUTHOR><AUTHOR>Trampert, J.</AUTHOR></AUTHORS><YEAR>2004</YEAR><TITLE>Probability density functions for radial anisotropy from fundamental mode surface wave data and the Neighbourhood algorithm</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>157</VOLUME><PAGES>163-1174</PAGES><LABEL>beghein04a</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>408</REFNUM><AUTHORS><AUTHOR>Beghein, C.</AUTHOR><AUTHOR>Trampert, J.</AUTHOR></AUTHORS><YEAR>2004</YEAR><TITLE>Lateral variations in radial anisotropy and consequences for the upper 1200km of the mantle</TITLE><SECONDARY_TITLE>Geophys. Res. Abstr.</SECONDARY_TITLE><VOLUME>6</VOLUME><PAGES>1348</PAGES><LABEL>beghein04b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>409</REFNUM><AUTHORS><AUTHOR>Beghein, C.</AUTHOR><AUTHOR>Trampert, J.</AUTHOR></AUTHORS><YEAR>2004</YEAR><TITLE>Probability density functions for radial anisotropy: implications for the upper 1200 km of the mantle</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>217</VOLUME><PAGES>151-162</PAGES><LABEL>beghein04c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>410</REFNUM><AUTHORS><AUTHOR>Beghein, C.</AUTHOR><AUTHOR>Trampert, J.</AUTHOR><AUTHOR>van Heijst, H. J.</AUTHOR></AUTHORS><YEAR>2006</YEAR><TITLE>Radial anisotropy in seismic reference models of the mantle</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>111</VOLUME><LABEL>beghein06</LABEL><URL>10.1029/2005JB00372</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>411</REFNUM><AUTHORS><AUTHOR>Beghein, C.</AUTHOR><AUTHOR>Resovsky, J.</AUTHOR><AUTHOR>van der Hilst, R. D.</AUTHOR></AUTHORS><YEAR>2008</YEAR><TITLE>The signal of mantle anisotropy in the coupling of normal modes</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>175</VOLUME><PAGES>1209-1234</PAGES><LABEL>beghein08</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>412</REFNUM><AUTHORS><AUTHOR>Beghein, C.</AUTHOR><AUTHOR>Yuan, K.</AUTHOR><AUTHOR>Schmerr, N.</AUTHOR><AUTHOR>Xing, Z.</AUTHOR></AUTHORS><YEAR>2014</YEAR><TITLE>Changes in seismic anisotropy shed light on the nature of the Gutenberg discontinuity</TITLE><SECONDARY_TITLE>Science</SECONDARY_TITLE><VOLUME>343</VOLUME><PAGES>1237-1240</PAGES><LABEL>beghein14</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>413</REFNUM><AUTHORS><AUTHOR>Beghein, Caroline</AUTHOR><AUTHOR>Li, Jiaqi</AUTHOR><AUTHOR>Weidner, E</AUTHOR><AUTHOR>Maguire, R</AUTHOR><AUTHOR>Wookey, J</AUTHOR><AUTHOR>Leki\'c, Vedran</AUTHOR><AUTHOR>Lognonn&#x00E9;, Philippe</AUTHOR><AUTHOR>Banerdt, W</AUTHOR></AUTHORS><YEAR>2022</YEAR><TITLE>Crustal anisotropy in the Martian lowlands from surface waves</TITLE><SECONDARY_TITLE>Geophys. Res. Lett.</SECONDARY_TITLE><VOLUME>49</VOLUME><PAGES>e2022GL101508</PAGES><LABEL>beghein22</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>414</REFNUM><AUTHORS><AUTHOR>Beghoul, N.</AUTHOR><AUTHOR>Barazangi, M.</AUTHOR></AUTHORS><YEAR>1989</YEAR><TITLE>Mapping high Pn velocity beneath the Colorado Plateau constrains uplift models</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>94</VOLUME><PAGES>7083-7104</PAGES><LABEL>beghoul89</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>415</REFNUM><AUTHORS><AUTHOR>Behn, M. D.</AUTHOR><AUTHOR>Lin, J.</AUTHOR><AUTHOR>Zuber, M. T.</AUTHOR></AUTHORS><YEAR>2002</YEAR><TITLE>A continuum mechanics model for normal faulting using a strain-rate softening rheology: Implications for thermal and rheological controls on continental and oceanic rifting</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>202</VOLUME><PAGES>725-740</PAGES><LABEL>behn02</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>416</REFNUM><AUTHORS><AUTHOR>Behn, Mark D</AUTHOR><AUTHOR>Lin, Jian</AUTHOR><AUTHOR>Zuber, Maria T</AUTHOR></AUTHORS><YEAR>2002</YEAR><TITLE>Evidence for weak oceanic transform faults</TITLE><SECONDARY_TITLE>Geophys. Res. Lett.</SECONDARY_TITLE><VOLUME>29</VOLUME><NUMBER>24</NUMBER><LABEL>behn02b</LABEL><URL>10.1029/2002GL015612</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>417</REFNUM><AUTHORS><AUTHOR>Behn, M. D.</AUTHOR><AUTHOR>Conrad, C. P.</AUTHOR><AUTHOR>Silver, P. G.</AUTHOR></AUTHORS><YEAR>2004</YEAR><TITLE>Detection of upper mantle flow associated with the African Superplume</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>224</VOLUME><PAGES>259-274</PAGES><LABEL>behn04</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>418</REFNUM><AUTHORS><AUTHOR>Behn, M. D.</AUTHOR><AUTHOR>Hirth, G.</AUTHOR><AUTHOR>Kelemen, P.</AUTHOR></AUTHORS><YEAR>2007</YEAR><TITLE>Trench-Parallel Anisotropy Produced by Foundering of Arc Lower Crust</TITLE><SECONDARY_TITLE>Science</SECONDARY_TITLE><VOLUME>317</VOLUME><PAGES>108-111</PAGES><LABEL>behn07</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>419</REFNUM><AUTHORS><AUTHOR>Behn, M. D.</AUTHOR><AUTHOR>Boettcher, M. S.</AUTHOR><AUTHOR>Hirth, G.</AUTHOR></AUTHORS><YEAR>2007</YEAR><TITLE>Thermal structure of oceanic transform faults</TITLE><SECONDARY_TITLE>Geology</SECONDARY_TITLE><VOLUME>35</VOLUME><PAGES>307-310</PAGES><LABEL>behn07b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>420</REFNUM><AUTHORS><AUTHOR>Behn, Mark D</AUTHOR><AUTHOR>Ito, Garrett</AUTHOR></AUTHORS><YEAR>2008</YEAR><TITLE>Magmatic and tectonic extension at mid-ocean ridges: 1. Controls on fault characteristics</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>9</VOLUME><NUMBER>Q08O10</NUMBER><LABEL>behn08</LABEL><URL>10.1029/2008GC001965</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>421</REFNUM><AUTHORS><AUTHOR>Behn, M. D.</AUTHOR><AUTHOR>Hirth, G.</AUTHOR><AUTHOR>Elsenbeck II, J. R.</AUTHOR></AUTHORS><YEAR>2009</YEAR><TITLE>Implications of grain size evolution on the seismic structure of the oceanic upper mantle</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>282</VOLUME><PAGES>178-189</PAGES><LABEL>behn09</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>422</REFNUM><AUTHORS><AUTHOR>Behn, Mark D</AUTHOR><AUTHOR>Grove, Timothy L</AUTHOR></AUTHORS><YEAR>2015</YEAR><TITLE>Melting systematics in mid-ocean ridge basalts: Application of a plagioclase-spinel melting model to global variations in major element chemistry and crustal thickness</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>120</VOLUME><PAGES>4863-4886</PAGES><LABEL>behn15</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3044</REFNUM><AUTHORS><AUTHOR>King, M. A.</AUTHOR><AUTHOR>Watson, C. S.</AUTHOR></AUTHORS><YEAR>2010</YEAR><TITLE>Long GPS coordinate time series: multipath and geometry effects</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>115</VOLUME><NUMBER>B04403</NUMBER><LABEL>king10</LABEL><URL>10.1029/2009JB006543</URL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3046</REFNUM><AUTHORS><AUTHOR>King, S. D.</AUTHOR><AUTHOR>Adam, C.</AUTHOR></AUTHORS><YEAR>2014</YEAR><TITLE>Hotspot swells revisited</TITLE><SECONDARY_TITLE>Phys. Earth Planet. Inter.</SECONDARY_TITLE><VOLUME>235</VOLUME><PAGES>66-83</PAGES><LABEL>king14</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3384</REFNUM><AUTHORS><AUTHOR>Li, Z.-X. L.</AUTHOR><AUTHOR>Lee, C.-T. A.</AUTHOR><AUTHOR>Peslier, A. H.</AUTHOR><AUTHOR>Lenardic, A.</AUTHOR><AUTHOR>Mackwell, S. J.</AUTHOR></AUTHORS><YEAR>2008</YEAR><TITLE>Water contents in mantle xenoliths from the Colorado Plateau and vicinity: Implications for the mantle rheology and hydration-induced thinning of continental lithosphere</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>113</VOLUME><LABEL>li08b</LABEL><URL>10.1029/2007JB005540</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3385</REFNUM><AUTHORS><AUTHOR>Li, C.</AUTHOR><AUTHOR>van der Hilst, R. D.</AUTHOR><AUTHOR>Engdahl, E. R.</AUTHOR><AUTHOR>Burdick, S.</AUTHOR></AUTHORS><YEAR>2008</YEAR><TITLE>A new global model for $P$ wave speed variations in Earth's mantle</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>9</VOLUME><NUMBER>Q05018</NUMBER><LABEL>li08c</LABEL><URL>10.1029/2007GC001806</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3386</REFNUM><AUTHORS><AUTHOR>Li, C.</AUTHOR><AUTHOR>van der Hilst, R. D.</AUTHOR><AUTHOR>Meltzer, A. S.</AUTHOR><AUTHOR>Engdahl, E. R.</AUTHOR></AUTHORS><YEAR>2008</YEAR><TITLE>Subduction of the Indian lithosphere beneath the Tibetan plateau and Burma</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>274</VOLUME><PAGES>157-168</PAGES><LABEL>li08d</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3387</REFNUM><AUTHORS><AUTHOR>Li, C.</AUTHOR><AUTHOR>van der Hilst, R. D.</AUTHOR></AUTHORS><YEAR>2010</YEAR><TITLE>Structure of the upper mantle and transition zone beneath southeast Asia from traveltime tomography</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>115</VOLUME><NUMBER>B07308</NUMBER><LABEL>li10</LABEL><URL>10.1029/2009JB006882</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3388</REFNUM><AUTHORS><AUTHOR>Li, Yonghua</AUTHOR><AUTHOR>Wu, Qingju</AUTHOR><AUTHOR>Zhang, Fengxue</AUTHOR><AUTHOR>Feng, Qiangqiang</AUTHOR><AUTHOR>Zhang, Ruiqing</AUTHOR></AUTHORS><YEAR>2011</YEAR><TITLE>Seismic anisotropy of the Northeastern Tibetan Plateau from shear wave splitting analysis</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>304</VOLUME><PAGES>147-157</PAGES><LABEL>li11</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3389</REFNUM><AUTHORS><AUTHOR>Li, Z.-H.</AUTHOR><AUTHOR>Ribe, N. M.</AUTHOR></AUTHORS><YEAR>2012</YEAR><TITLE>Dynamics of free subduction from 3-D boundary element modeling</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>117</VOLUME><NUMBER>B06408</NUMBER><LABEL>li12</LABEL><URL>10.1029/2012JB009165</URL></RECORD>
<RECORD><REFERENCE_TYPE>47</REFERENCE_TYPE><REFNUM>3390</REFNUM><AUTHORS><AUTHOR>Li, Z.</AUTHOR><AUTHOR>Peng, Z.</AUTHOR><AUTHOR>Ross, Z.</AUTHOR><AUTHOR>Vernon, F.</AUTHOR><AUTHOR>Ben-Zion, Y.</AUTHOR></AUTHORS><YEAR>2014</YEAR><TITLE>Variations of seismic anisotropy along the San Jacinto fault zone, southern California</TITLE><SECONDARY_TITLE>Annual Meeting 2014, Proceedings Volume XXIV</SECONDARY_TITLE><PLACE_PUBLISHED>Los Angeles, CA</PLACE_PUBLISHED><PUBLISHER>Southern California Earthquake Center</PUBLISHER><PAGES>157</PAGES><LABEL>li14</LABEL><NOTES>www.scec.org/meetings/2014am/SCEC2014Proceedings.pdf</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3391</REFNUM><AUTHORS><AUTHOR>Li, Z.</AUTHOR><AUTHOR>Zhang, H.</AUTHOR><AUTHOR>Peng, Z.</AUTHOR></AUTHORS><YEAR>2014</YEAR><TITLE>Structure-controlled seismic anisotropy along the Karadere-D&#x00FC;zce branch of the North Anatolian Fault revealed by shear-wave splitting tomography</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>391</VOLUME><PAGES>319-326</PAGES><LABEL>li14b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3392</REFNUM><AUTHORS><AUTHOR>Li, Z.-H.</AUTHOR><AUTHOR>Leo, J. F. Di</AUTHOR><AUTHOR>Ribe, N.M.</AUTHOR></AUTHORS><YEAR>2014</YEAR><TITLE>Subduction-induced mantle flow, finite strain, and seismic anisotropy: Numerical modeling</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>119</VOLUME><PAGES>5052-5076</PAGES><LABEL>li14c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3393</REFNUM><AUTHORS><AUTHOR>Li, S.</AUTHOR><AUTHOR>Moreno, M.</AUTHOR><AUTHOR>Bedford, J.</AUTHOR><AUTHOR>Rosenau, M.</AUTHOR><AUTHOR>Oncken, O.</AUTHOR></AUTHORS><YEAR>2015</YEAR><TITLE>Revisiting viscoelastic effects on interseismic deformation and locking degree: A case study of the Peru-North Chile subduction zone</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>120</VOLUME><PAGES>4522-4538</PAGES><LABEL>li15</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3394</REFNUM><AUTHORS><AUTHOR>Li, Gen</AUTHOR><AUTHOR>Tang, Chun-An</AUTHOR></AUTHORS><YEAR>2015</YEAR><TITLE>A statistical meso-damage mechanical method for modeling trans-scale progressive failure process of rock</TITLE><SECONDARY_TITLE>Int. J. Rock Mech. Min. Sci.</SECONDARY_TITLE><VOLUME>74</VOLUME><PAGES>133-150</PAGES><LABEL>li15b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3395</REFNUM><AUTHORS><AUTHOR>Li, Zefeng</AUTHOR><AUTHOR>Peng, Zhigang</AUTHOR></AUTHORS><YEAR>2017</YEAR><TITLE>Stress- and structure-induced anisotropy in Southern California from two decades of shear wave splitting measurements</TITLE><SECONDARY_TITLE>Geophys. Res. Lett.</SECONDARY_TITLE><VOLUME>44</VOLUME><PAGES>9607-09614</PAGES><LABEL>li17</LABEL><URL>10.1002/2017GL075163</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3396</REFNUM><AUTHORS><AUTHOR>Li, D.</AUTHOR><AUTHOR>Gurnis, M.</AUTHOR><AUTHOR>Stadler, G.</AUTHOR></AUTHORS><YEAR>2017</YEAR><TITLE>Towards adjoint-based inversion of time-dependent mantle convection with nonlinear viscosity</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>209</VOLUME><PAGES>86-105</PAGES><LABEL>li17b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3397</REFNUM><AUTHORS><AUTHOR>Li, Duo</AUTHOR><AUTHOR>Liu, Yajing</AUTHOR></AUTHORS><YEAR>2017</YEAR><TITLE>Modeling slow-slip segmentation in Cascadia subduction zone constrained by tremor locations and gravity anomalies</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>122</VOLUME><PAGES>3138-3157</PAGES><LABEL>li17c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3398</REFNUM><AUTHORS><AUTHOR>Li, Mingming</AUTHOR><AUTHOR>Zhong, Shijie</AUTHOR></AUTHORS><YEAR>2017</YEAR><TITLE>The source location of mantle plumes from 3D spherical models of mantle convection</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>478</VOLUME><PAGES>47-57</PAGES><LABEL>li17d</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3399</REFNUM><AUTHORS><AUTHOR>Li, Shaoyang</AUTHOR><AUTHOR>Wang, Kelin</AUTHOR><AUTHOR>Wang, Yanzhao</AUTHOR><AUTHOR>Jiang, Yan</AUTHOR><AUTHOR>Dosso, Stan E.</AUTHOR></AUTHORS><YEAR>2018</YEAR><TITLE>Geodetically Inferred Locking State of the Cascadia Megathrust Based on a Viscoelastic Earth Model</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>123</VOLUME><PAGES>8056-8072</PAGES><LABEL>li18</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3400</REFNUM><AUTHORS><AUTHOR>Li, Shaoyang</AUTHOR><AUTHOR>Bedford, Jonathan</AUTHOR><AUTHOR>Moreno, Marcos</AUTHOR><AUTHOR>Barnhart, William D.</AUTHOR><AUTHOR>Rosenau, Matthias</AUTHOR><AUTHOR>Oncken, Onno</AUTHOR></AUTHORS><YEAR>2018</YEAR><TITLE>Spatiotemporal Variation of Mantle Viscosity and the Presence of Cratonic Mantle Inferred From 8 Years of Postseismic Deformation Following the 2010 Maule, Chile, earthquake</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>19</VOLUME><PAGES>3272-3285</PAGES><LABEL>li18b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3401</REFNUM><AUTHORS><AUTHOR>Li, Duo</AUTHOR><AUTHOR>McGuire, Jeffrey J</AUTHOR><AUTHOR>Liu, Yajing</AUTHOR><AUTHOR>Hardebeck, Jeanne L</AUTHOR></AUTHORS><YEAR>2018</YEAR><TITLE>Stress rotation across the Cascadia megathrust requires a weak subduction plate boundary at seismogenic depths</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>485</VOLUME><PAGES>55-64</PAGES><LABEL>li18c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3402</REFNUM><AUTHORS><AUTHOR>Li, Chenglong</AUTHOR><AUTHOR>Li, Tao</AUTHOR><AUTHOR>Shan, Xinjian</AUTHOR><AUTHOR>Zhang, Guohong</AUTHOR></AUTHORS><YEAR>2023</YEAR><TITLE>Extremely large off-fault deformation during the 2021 $M_w$ 7.4 Maduo, Tibetan plateau, Earthquake</TITLE><SECONDARY_TITLE>Seismol. Res. Lett.</SECONDARY_TITLE><VOLUME>94</VOLUME><PAGES>39-51</PAGES><LABEL>li23</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3403</REFNUM><AUTHORS><AUTHOR>Li, Yida</AUTHOR><AUTHOR>Gurnis, Michael</AUTHOR></AUTHORS><YEAR>2023</YEAR><TITLE>A simple force balance model of subduction initiation</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>232</VOLUME><PAGES>128-146</PAGES><LABEL>li23b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3404</REFNUM><AUTHORS><AUTHOR>Li, Yong-Xiang</AUTHOR><AUTHOR>Tarduno, John A</AUTHOR><AUTHOR>Jiao, Wenjun</AUTHOR><AUTHOR>Liu, Xinyu</AUTHOR><AUTHOR>Peng, Shanchi</AUTHOR><AUTHOR>Xu, Shihua</AUTHOR><AUTHOR>Yang, Aihua</AUTHOR><AUTHOR>Yang, Zhenyu</AUTHOR></AUTHORS><YEAR>2023</YEAR><TITLE>Late Cambrian geomagnetic instability after the onset of inner core nucleation</TITLE><SECONDARY_TITLE>Nature Comm.</SECONDARY_TITLE><VOLUME>14</VOLUME><PAGES>4596</PAGES><LABEL>li23c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3405</REFNUM><AUTHORS><AUTHOR>Li, Yuexin</AUTHOR><AUTHOR>B&#x00FC;rgmann, Roland</AUTHOR><AUTHOR>Taira, Taka'aki</AUTHOR></AUTHORS><YEAR>2023</YEAR><TITLE>Spatiotemporal variations of surface deformation, shallow creep rate, and slip partitioning between the San Andreas and southern Calaveras Fault</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>128</VOLUME><PAGES>e2022JB025363</PAGES><LABEL>li23d</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3406</REFNUM><AUTHORS><AUTHOR>Li, Xing</AUTHOR><AUTHOR>J&#x00F3;nsson, Sigurj&#x00F3;n</AUTHOR><AUTHOR>Liu, Shaozhuo</AUTHOR><AUTHOR>Ma, Zhangfeng</AUTHOR><AUTHOR>Castro-Perdomo, Nicol&#x00E1;s</AUTHOR><AUTHOR>Cesca, Simone</AUTHOR><AUTHOR>Masson, Fr&#x00E9;d&#x00E9;ric</AUTHOR><AUTHOR>Klinger, Yann</AUTHOR></AUTHORS><YEAR>2024</YEAR><TITLE>Resolving the slip-rate inconsistency of the northern Dead Sea fault</TITLE><SECONDARY_TITLE>Sci. Adv.</SECONDARY_TITLE><VOLUME>10</VOLUME><PAGES>eadj8408</PAGES><LABEL>li24</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3407</REFNUM><AUTHORS><AUTHOR>Li, Ranpeng</AUTHOR><AUTHOR>Dannberg, Juliane</AUTHOR><AUTHOR>Gassm&#x00F6;ller, Rene</AUTHOR><AUTHOR>Lithgow-Bertelloni, Carolina</AUTHOR><AUTHOR>Stixrude, Lars</AUTHOR></AUTHORS><YEAR>2025</YEAR><TITLE>How phase transitions impact changes in mantle convection style throughout Earth's history: From stalled plumes to surface dynamics</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>26</VOLUME><PAGES>e2024GC011600</PAGES><LABEL>li25</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3408</REFNUM><AUTHORS><AUTHOR>Li, V. C.</AUTHOR><AUTHOR>Rice, J.R.</AUTHOR></AUTHORS><YEAR>1987</YEAR><DATE>October</DATE><TITLE>Crustal Deformation in Great California Earthquake Cycles</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>92</VOLUME><PAGES>11533-11551</PAGES><LABEL>li87</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3409</REFNUM><AUTHORS><AUTHOR>Li, V. C.</AUTHOR><AUTHOR>Seale, S. H.</AUTHOR><AUTHOR>Cao, T.</AUTHOR></AUTHORS><YEAR>1987</YEAR><TITLE>Postseismic stress and pore pressure readjustment and aftershock distributions</TITLE><SECONDARY_TITLE>Tectonophys.</SECONDARY_TITLE><VOLUME>144</VOLUME><PAGES>37-54</PAGES><LABEL>li87b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3410</REFNUM><AUTHORS><AUTHOR>Li, V. C.</AUTHOR><AUTHOR>Lim, H. S.</AUTHOR></AUTHORS><YEAR>1988</YEAR><DATE>July</DATE><TITLE>Modeling Surface Deformations at Complex Strike-Slip Plate Boundaries</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>93</VOLUME><PAGES>7943-7954</PAGES><LABEL>li88</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3411</REFNUM><AUTHORS><AUTHOR>Li, Y-G</AUTHOR><AUTHOR>Leary, PC</AUTHOR></AUTHORS><YEAR>1990</YEAR><TITLE>Fault zone trapped seismic waves</TITLE><SECONDARY_TITLE>Bull. Seismol. Soc. Am.</SECONDARY_TITLE><VOLUME>80</VOLUME><PAGES>1245-1271</PAGES><LABEL>li90</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3413</REFNUM><AUTHORS><AUTHOR>Li, Yong-Gang</AUTHOR><AUTHOR>Vidale, John E</AUTHOR><AUTHOR>Aki, Keiiti</AUTHOR><AUTHOR>Xu, Fei</AUTHOR><AUTHOR>Burdette, Thomas</AUTHOR></AUTHORS><YEAR>1998</YEAR><TITLE>Evidence of shallow fault zone strengthening after the 1992 M 7.5 Landers, California, earthquake</TITLE><SECONDARY_TITLE>Science</SECONDARY_TITLE><VOLUME>279</VOLUME><PAGES>217-219</PAGES><LABEL>li98</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3414</REFNUM><AUTHORS><AUTHOR>Liakopoulou-Morris, F.</AUTHOR><AUTHOR>Main, I. G.</AUTHOR><AUTHOR>Crawford, B. R.</AUTHOR><AUTHOR>Smart, B. G. D.</AUTHOR></AUTHORS><YEAR>1994</YEAR><TITLE>Microseismic properties of a homogeneous sandstone during fault nucleation and frictional sliding</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>119</VOLUME><PAGES>219-230</PAGES><LABEL>liakopoulou-morris94</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>2</REFERENCE_TYPE><REFNUM>3415</REFNUM><AUTHORS><AUTHOR>Liao, K.</AUTHOR></AUTHORS><YEAR>2018</YEAR><TITLE>mpacts of lithospheric rheology on surface topography</TITLE><PUBLISHER>The University of Texas at Austin</PUBLISHER><LABEL>liao18</LABEL><NOTES>hdl.handle.net/2152/68456</NOTES></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3416</REFNUM><AUTHORS><AUTHOR>Libbrecht, K. G.</AUTHOR></AUTHORS><YEAR>1985</YEAR><TITLE>Practical considerations for the generation of large-order spherical harmonics</TITLE><SECONDARY_TITLE>Solar Phys.</SECONDARY_TITLE><VOLUME>99</VOLUME><PAGES>371-373</PAGES><LABEL>libbrecht85</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3418</REFNUM><AUTHORS><AUTHOR>Libicki, E.</AUTHOR><AUTHOR>Ben-Zion, Y.</AUTHOR></AUTHORS><YEAR>2005</YEAR><TITLE>Stochastic Branching Models of Fault Surfaces and Estimated Fractal Dimensions</TITLE><SECONDARY_TITLE>Pure Appl. Geophys.</SECONDARY_TITLE><VOLUME>162</VOLUME><PAGES>6-7</PAGES><LABEL>libicki05</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3419</REFNUM><AUTHORS><AUTHOR>Lienkaemper, J. J.</AUTHOR><AUTHOR>Baker, B.</AUTHOR><AUTHOR>McFarland, F. S.</AUTHOR></AUTHORS><YEAR>2006</YEAR><TITLE>Surface Slip Associated with the 2004 Parkfield, California, Earthquake Measured on Alinement Arrays</TITLE><SECONDARY_TITLE>Bull. Seismol. Soc. Am.</SECONDARY_TITLE><VOLUME>96</VOLUME><PAGES>239-249</PAGES><LABEL>lienkaemper06</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3420</REFNUM><AUTHORS><AUTHOR>Li, X.</AUTHOR><AUTHOR>Yuan, X.</AUTHOR><AUTHOR>Kind, R.</AUTHOR></AUTHORS><YEAR>2007</YEAR><TITLE>The lithosphere-asthenosphere boundary beneath the western United States</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>170</VOLUME><PAGES>700-710</PAGES><LABEL>likind07</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3421</REFNUM><AUTHORS><AUTHOR>Lin, G.</AUTHOR><AUTHOR>Shearer, P.</AUTHOR></AUTHORS><YEAR>2005</YEAR><TITLE>Tests of relative earthquake relocation techniques using synthetic data</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>110</VOLUME><NUMBER>B04304</NUMBER><LABEL>lin05</LABEL><URL>10.1029/2004JB003380</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3422</REFNUM><AUTHORS><AUTHOR>Lin, Shu-Chuan</AUTHOR><AUTHOR>Van Keken, Peter E</AUTHOR></AUTHORS><YEAR>2006</YEAR><TITLE>Dynamics of thermochemical plumes: 2. Complexity of plume structures and its implications for mapping mantle plumes</TITLE><SECONDARY_TITLE>Geochem., Geophys., Geosys.</SECONDARY_TITLE><VOLUME>7</VOLUME><NUMBER>Q03003</NUMBER><LABEL>lin06</LABEL><URL>10.1029/2005GC001072</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3423</REFNUM><AUTHORS><AUTHOR>Lin, G.</AUTHOR><AUTHOR>Shearer, P. M.</AUTHOR><AUTHOR>Hauksson, E.</AUTHOR></AUTHORS><YEAR>2007</YEAR><TITLE>Applying a three-dimensional velocity model, waveform cross correlation, and cluster analysis to locate southern California seismicity from 1981 to 2005</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>112</VOLUME><NUMBER>B12309</NUMBER><LABEL>lin07</LABEL><URL>2007JB004986</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3424</REFNUM><AUTHORS><AUTHOR>Lin, G.</AUTHOR><AUTHOR>Shearer, P.</AUTHOR></AUTHORS><YEAR>2007</YEAR><TITLE>Estimating local Vp/Vs ratios within similar earthquake clusters</TITLE><SECONDARY_TITLE>Bull. Seismol. Soc. Am.</SECONDARY_TITLE><VOLUME>97</VOLUME><PAGES>379-388</PAGES><LABEL>lin07b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3425</REFNUM><AUTHORS><AUTHOR>Lin, F.-C.</AUTHOR><AUTHOR>Ritzwoller, M. H.</AUTHOR><AUTHOR>Snieder, R.</AUTHOR></AUTHORS><YEAR>2008</YEAR><TITLE>Eikonal tomography: surface wave tomography by phase-front tracking across a regional broad-band seismic array</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>177</VOLUME><PAGES>1091-1110</PAGES><LABEL>lin08a</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3426</REFNUM><AUTHORS><AUTHOR>Lin, F.-C.</AUTHOR><AUTHOR>Moschetti, M. P.</AUTHOR><AUTHOR>Ritzwoller, M. H.</AUTHOR></AUTHORS><YEAR>2008</YEAR><TITLE>Crustal and uppermost mantle shear wave azimuthal anisotropy in the western United States based on ambient noise cross correlation and Eikonal tomography</TITLE><SECONDARY_TITLE>Eos Trans. AGU</SECONDARY_TITLE><VOLUME>89</VOLUME><NUMBER>53</NUMBER><PAGES>S24A-02</PAGES><LABEL>lin08b</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3757</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR></AUTHORS><YEAR>1967</YEAR><TITLE>The viscosity of the mantle</TITLE><SECONDARY_TITLE>Geophys. J. R. Astr. Soc.</SECONDARY_TITLE><VOLUME>14</VOLUME><PAGES>297-327</PAGES><LABEL>mckenzie67b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3758</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR></AUTHORS><YEAR>1967</YEAR><TITLE>Some remarks on heat flow and gravity anomalies</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>72</VOLUME><PAGES>6261-6273</PAGES><LABEL>mckenzie67c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3759</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR></AUTHORS><YEAR>1969</YEAR><TITLE>Speculations on the consequences and causes of plate motions</TITLE><SECONDARY_TITLE>Geophys. J. R. Astr. Soc.</SECONDARY_TITLE><VOLUME>18</VOLUME><PAGES>1-32</PAGES><LABEL>mckenzie69</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3760</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR></AUTHORS><YEAR>1969</YEAR><TITLE>The relation between fault plane solutions for earthquakes and the directions of the principal stresses</TITLE><SECONDARY_TITLE>Bull. Seismol. Soc. Am.</SECONDARY_TITLE><VOLUME>59</VOLUME><PAGES>591-601</PAGES><LABEL>mckenzie69b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3761</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR><AUTHOR>Morgan, J. P.</AUTHOR></AUTHORS><YEAR>1969</YEAR><TITLE>Evolution of triple junctions</TITLE><SECONDARY_TITLE>Nature</SECONDARY_TITLE><PAGES>125-133</PAGES><LABEL>mckenzie69c</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3762</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR></AUTHORS><YEAR>1970</YEAR><TITLE>Temperature and potential temperature beneath island arcs</TITLE><SECONDARY_TITLE>Tectonophys.</SECONDARY_TITLE><VOLUME>10</VOLUME><PAGES>357-366</PAGES><LABEL>mckenzie70</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3763</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR><AUTHOR>Brune, J.</AUTHOR></AUTHORS><YEAR>1972</YEAR><TITLE>Melting on fault planes during large earthquakes</TITLE><SECONDARY_TITLE>Geophys. J. R. Astr. Soc.</SECONDARY_TITLE><VOLUME>29</VOLUME><PAGES>65-78</PAGES><LABEL>mckenzie72</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3764</REFNUM><AUTHORS><AUTHOR>McKenzie, Dan P.</AUTHOR></AUTHORS><YEAR>1972</YEAR><TITLE>Active tectonics of the Mediterranean region</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>30</VOLUME><PAGES>109-185</PAGES><LABEL>mckenzie72b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3765</REFNUM><AUTHORS><AUTHOR>McKenzie, Dan P.</AUTHOR><AUTHOR>Weiss, Nigel</AUTHOR></AUTHORS><YEAR>1975</YEAR><TITLE>Speculations on the thermal and tectonic history of the Earth</TITLE><SECONDARY_TITLE>Geophys. J. R. Astr. Soc.</SECONDARY_TITLE><VOLUME>42</VOLUME><PAGES>131-174</PAGES><LABEL>mckenzie75</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3766</REFNUM><AUTHORS><AUTHOR>McKenzie, Dan P.</AUTHOR><AUTHOR>Bowin, Carl</AUTHOR></AUTHORS><YEAR>1976</YEAR><TITLE>The relationship between bathymetry and gravity in the Atlantic Ocean</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>81</VOLUME><PAGES>1903-1915</PAGES><LABEL>mckenzie76</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>5</REFERENCE_TYPE><REFNUM>3767</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR></AUTHORS><YEAR>1977</YEAR><TITLE>The initiation of trenches: a finite amplitude instability</TITLE><SECONDARY_TITLE>Island Arcs, Deep Sea Trenches and Back-Arc basins</SECONDARY_TITLE><PLACE_PUBLISHED>Washington DC</PLACE_PUBLISHED><PUBLISHER>American Geophysical Union</PUBLISHER><VOLUME>1</VOLUME><PAGES>57-61</PAGES><LABEL>mckenzie77</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3768</REFNUM><AUTHORS><AUTHOR>McKenzie, Dan P.</AUTHOR></AUTHORS><YEAR>1978</YEAR><TITLE>Some remarks on the development of sedimentary basins</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>40</VOLUME><PAGES>25-32</PAGES><LABEL>mckenzie78</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3769</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR></AUTHORS><YEAR>1979</YEAR><TITLE>Finite deformation during fluid flow</TITLE><SECONDARY_TITLE>Geophys. J. R. Astr. Soc.</SECONDARY_TITLE><VOLUME>58</VOLUME><PAGES>689-715</PAGES><LABEL>mckenzie79</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3770</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR><AUTHOR>Jackson, J.</AUTHOR></AUTHORS><YEAR>1983</YEAR><TITLE>The relationship between strain rates, crustal thickening, paleomagnetism, finite strain and fault movements within a deforming zone</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>65</VOLUME><PAGES>182-202</PAGES><LABEL>mckenzie83</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3771</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR></AUTHORS><YEAR>1984</YEAR><TITLE>The generation and compaction of partially molten rock</TITLE><SECONDARY_TITLE>J. Petrol.</SECONDARY_TITLE><VOLUME>25</VOLUME><PAGES>713-765</PAGES><LABEL>mckenzie84</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3772</REFNUM><AUTHORS><AUTHOR>McKenzie, D. P.</AUTHOR><AUTHOR>Bickle, M. J.</AUTHOR></AUTHORS><YEAR>1988</YEAR><TITLE>The volume and composition of melt generated by extension of the lithosphere</TITLE><SECONDARY_TITLE>J. Petrol.</SECONDARY_TITLE><VOLUME>29</VOLUME><PAGES>625-679</PAGES><LABEL>mckenzie88</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>1</REFERENCE_TYPE><REFNUM>3773</REFNUM><AUTHORS><AUTHOR>McLachlan, Geoffrey J</AUTHOR><AUTHOR>Peel, David</AUTHOR></AUTHORS><YEAR>2000</YEAR><TITLE>Finite mixture models</TITLE><PLACE_PUBLISHED>Hoboken, NY</PLACE_PUBLISHED><PUBLISHER>John Wiley &#x0026; Sons</PUBLISHER><LABEL>mclachlan00</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3774</REFNUM><AUTHORS><AUTHOR>McLaskey, Gregory C</AUTHOR><AUTHOR>Kilgore, Brian D</AUTHOR></AUTHORS><YEAR>2013</YEAR><TITLE>Foreshocks during the nucleation of stick-slip instability</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>118</VOLUME><PAGES>2982-2997</PAGES><LABEL>mclaskey13</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3775</REFNUM><AUTHORS><AUTHOR>McLaskey, Gregory C</AUTHOR><AUTHOR>Kilgore, Brian D</AUTHOR><AUTHOR>Lockner, David A</AUTHOR><AUTHOR>Beeler, Nicholas M</AUTHOR></AUTHORS><YEAR>2014</YEAR><TITLE>Laboratory generated M$-6$ earthquakes</TITLE><SECONDARY_TITLE>Pure Appl. Geophys.</SECONDARY_TITLE><VOLUME>171</VOLUME><PAGES>2601-2615</PAGES><LABEL>mclaskey14</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3776</REFNUM><AUTHORS><AUTHOR>McLaskey, G. C.</AUTHOR></AUTHORS><YEAR>2019</YEAR><TITLE>Earthquake initiation from laboratory observations and implications for foreshocks</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>124</VOLUME><PAGES>12882-12904</PAGES><LABEL>mclaskey19</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3777</REFNUM><AUTHORS><AUTHOR>McLeaskey, G. C.</AUTHOR><AUTHOR>Glaser, S. D.</AUTHOR></AUTHORS><YEAR>2011</YEAR><TITLE>Micromechanics of asperity rupture during laboratory stick slip experiments</TITLE><SECONDARY_TITLE>Geophys. Res. Lett.</SECONDARY_TITLE><VOLUME>38</VOLUME><LABEL>mcleaskey11</LABEL><URL>10.1029/2011GL047507</URL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3779</REFNUM><AUTHORS><AUTHOR>McNamara, A.</AUTHOR><AUTHOR>Karato, S.-i.</AUTHOR><AUTHOR>van Keken, P. E.</AUTHOR></AUTHORS><YEAR>2001</YEAR><TITLE>Localization of dislocation creep in the lower mantle: Implications for the origin of seismic anisotropy</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>191</VOLUME><PAGES>85-99</PAGES><LABEL>mcnamara01</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3782</REFNUM><AUTHORS><AUTHOR>McNamara, A. K.</AUTHOR><AUTHOR>Zhong, S.</AUTHOR></AUTHORS><YEAR>2004</YEAR><TITLE>Thermochemical structures within a spherical mantle: Superplumes or Piles?</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>109</VOLUME><LABEL>mcnamara04</LABEL><URL>10.1029/2003JB002847</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3783</REFNUM><AUTHORS><AUTHOR>McNamara, A. K.</AUTHOR><AUTHOR>Zhong, S.</AUTHOR></AUTHORS><YEAR>2004</YEAR><TITLE>The influence of thermochemical convection on the fixity of mantle plumes</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>222</VOLUME><PAGES>485-500</PAGES><LABEL>mcnamara04b</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3785</REFNUM><AUTHORS><AUTHOR>McNamara, Allen K</AUTHOR></AUTHORS><YEAR>2019</YEAR><TITLE>A review of large low shear velocity provinces and ultra low velocity zones</TITLE><SECONDARY_TITLE>Tectonophys.</SECONDARY_TITLE><VOLUME>760</VOLUME><PAGES>199-220</PAGES><LABEL>mcnamara19</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3795</REFNUM><AUTHORS><AUTHOR>Meade, B. J.</AUTHOR><AUTHOR>Hager, B. H.</AUTHOR><AUTHOR>McClusky, S. C.</AUTHOR><AUTHOR>Reilinger, R. E.</AUTHOR><AUTHOR>Ergintav, S.</AUTHOR><AUTHOR>Lenk, O.</AUTHOR><AUTHOR>Barka, A. A.</AUTHOR><AUTHOR>Ozener, H.</AUTHOR></AUTHORS><YEAR>2002</YEAR><TITLE>Estimates of seismic potential in the Marmara Sea region from block models of secular deformation constrained by Global Positioning System measurements</TITLE><SECONDARY_TITLE>Bull. Seismol. Soc. Am.</SECONDARY_TITLE><VOLUME>92</VOLUME><PAGES>208-215</PAGES><LABEL>meade02</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>3996</REFNUM><AUTHORS><AUTHOR>Moore, William B</AUTHOR><AUTHOR>Webb, A Alexander G</AUTHOR></AUTHORS><YEAR>2013</YEAR><TITLE>Heat-pipe Earth</TITLE><SECONDARY_TITLE>Nature</SECONDARY_TITLE><VOLUME>501</VOLUME><PAGES>501-505</PAGES><LABEL>moore13</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4721</REFNUM><AUTHORS><AUTHOR>Ribe, Neil M</AUTHOR><AUTHOR>Tackley, Paul J</AUTHOR><AUTHOR>Sanan, Patrick</AUTHOR></AUTHORS><YEAR>2020</YEAR><TITLE>The strength of the Iceland plume: A geodynamical scaling approach</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>551</VOLUME><PAGES>116570</PAGES><LABEL>ribe20</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4729</REFNUM><AUTHORS><AUTHOR>Ribe, N. M.</AUTHOR></AUTHORS><YEAR>1996</YEAR><TITLE>The dynamics of plume-ridge interaction. 2. Off-ridge plumes</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>1001</VOLUME><PAGES>16195-16204</PAGES><LABEL>ribe96</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4730</REFNUM><AUTHORS><AUTHOR>Ribe, N. M.</AUTHOR><AUTHOR>Christensen, U. R.</AUTHOR></AUTHORS><YEAR>1999</YEAR><TITLE>The dynamical origin of Hawaiian volcanism</TITLE><SECONDARY_TITLE>Earth Planet. Sci. Lett.</SECONDARY_TITLE><VOLUME>171</VOLUME><PAGES>517-531</PAGES><LABEL>ribe99</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4731</REFNUM><AUTHORS><AUTHOR>Ricard, Yanick</AUTHOR><AUTHOR>Bercovici, David</AUTHOR></AUTHORS><YEAR>2003</YEAR><TITLE>Two-phase damage theory and crustal rock failure: the theoretical ``void'' limit, and the prediction of experimental data</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>155</VOLUME><PAGES>1057-1064</PAGES><LABEL>ricard03</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>5</REFERENCE_TYPE><REFNUM>4732</REFNUM><AUTHORS><AUTHOR>Ricard, Y.</AUTHOR><AUTHOR>Mattern, E.</AUTHOR><AUTHOR>Matas, J.</AUTHOR></AUTHORS><YEAR>2005</YEAR><TITLE>Synthetic Tomographic Images of Slabs from Mineral Physics</TITLE><SECONDARY_TITLE>Changing Views on the Structure, Composition, and Evolution of Earth's Deep Mantle</SECONDARY_TITLE><PLACE_PUBLISHED>Washington DC</PLACE_PUBLISHED><PUBLISHER>American Geophysical Union</PUBLISHER><PAGES>285-302</PAGES><LABEL>ricard05</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>5</REFERENCE_TYPE><REFNUM>4733</REFNUM><AUTHORS><AUTHOR>Ricard, Y.</AUTHOR></AUTHORS><YEAR>2007</YEAR><TITLE>Physics of mantle convection</TITLE><SECONDARY_TITLE>Treatise on Geophysics</SECONDARY_TITLE><PLACE_PUBLISHED>Oxford UK</PLACE_PUBLISHED><PUBLISHER>Elsevier</PUBLISHER><LABEL>ricard07</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4734</REFNUM><AUTHORS><AUTHOR>Ricard, Y.</AUTHOR><AUTHOR>Bercovici, D.</AUTHOR></AUTHORS><YEAR>2009</YEAR><TITLE>A continuum theory of grain size evolution and damage</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>114</VOLUME><NUMBER>B01204</NUMBER><LABEL>ricard09</LABEL><URL>10.1029/2007JB005491</URL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4735</REFNUM><AUTHORS><AUTHOR>Ricard, Y.</AUTHOR><AUTHOR>Fleitout, L.</AUTHOR><AUTHOR>Froidevaux, C.</AUTHOR></AUTHORS><YEAR>1984</YEAR><TITLE>Geoid heights and lithospheric stresses for a dynamic Earth</TITLE><SECONDARY_TITLE>Ann. Geophys.</SECONDARY_TITLE><VOLUME>2</VOLUME><PAGES>267-286</PAGES><LABEL>ricard84</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4736</REFNUM><AUTHORS><AUTHOR>Ricard, Y.</AUTHOR><AUTHOR>Froidevaux, C.</AUTHOR></AUTHORS><YEAR>1986</YEAR><TITLE>Stretching Instabilities and Lithospheric Boudinage</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>91</VOLUME><PAGES>8314-8324</PAGES><LABEL>ricard86</LABEL></RECORD>
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<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4738</REFNUM><AUTHORS><AUTHOR>Ricard, Y.</AUTHOR><AUTHOR>Doglioni, C.</AUTHOR><AUTHOR>Sabadini, R.</AUTHOR></AUTHORS><YEAR>1991</YEAR><TITLE>Differential Rotation Between Lithosphere and Mantle: A Consequence of Lateral Mantle Viscosity Variations</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>96</VOLUME><PAGES>8407-8415</PAGES><LABEL>ricard91a</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4739</REFNUM><AUTHORS><AUTHOR>Ricard, Y.</AUTHOR><AUTHOR>Bai, W.</AUTHOR></AUTHORS><YEAR>1991</YEAR><TITLE>Inferring the viscosity and the 3-D density structure of the mantle from geoid, topography and plate velocities</TITLE><SECONDARY_TITLE>Geophys. J. Int.</SECONDARY_TITLE><VOLUME>105</VOLUME><PAGES>561-571</PAGES><LABEL>ricard91b</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4740</REFNUM><AUTHORS><AUTHOR>Ricard, Y.</AUTHOR><AUTHOR>Richards, M. A.</AUTHOR><AUTHOR>Lithgow-Bertelloni, C.</AUTHOR><AUTHOR>Le Stunff, Y.</AUTHOR></AUTHORS><YEAR>1993</YEAR><TITLE>A geodynamic model of mantle density heterogeneity</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>98</VOLUME><PAGES>21895-21909</PAGES><LABEL>ricard93</LABEL></RECORD>
<RECORD><REFERENCE_TYPE>0</REFERENCE_TYPE><REFNUM>4741</REFNUM><AUTHORS><AUTHOR>Ricard, Y.</AUTHOR><AUTHOR>Nataf, H.-C.</AUTHOR><AUTHOR>Montagner, J.-P.</AUTHOR></AUTHORS><YEAR>1996</YEAR><TITLE>The 3-SMAC model: confrontation with data</TITLE><SECONDARY_TITLE>J. Geophys. Res.: Sol. Earth</SECONDARY_TITLE><VOLUME>101</VOLUME><PAGES>8457-8472</PAGES><LABEL>ricard96</LABEL></RECORD>
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