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Sekido, M., T. Kondo, E. Kawai, and M. Imae (2003), Evaluation of GPS-based ionospheric TEC map by comparing with VLBI data, Radio Science, 38(4).
Selim, H. H. (2013), Tectonics of the buried Kirklareli Fault, Thrace Region, NW Turkey, Quat. Int., 312, 120-131.
Selim, H. H., O. Tuysuz, A. Karakas, and K. O. Tas (2013), Morphotectonic evidence from the southern branch of the North Anatolian Fault (NAF) and basins of the south Marmara sub-region, NW Turkey, Quat. Int., 292, 176-192.
Selvans, M. M., J. M. Stock, C. DeMets, O. Sanchez, and B. Marquez-Azua (2011), Constraints on Jalisco Block Motion and Tectonics of the Guadalajara Triple Junction from 1998-2001 Campaign GPS Data, Pure and Applied Geophysics, 168(8-9), 1435-1447.
Semmane, F., M. Campillo, and F. Cotton (2005), Fault location and source process of the Boumerdes, Algeria, earthquake inferred from geodetic and strong motion data, Geophysical Research Letters, 32(1).
Semmane, F., F. Cotton, and M. Campillo (2005), The 2000 Tottori earthquake: A shallow earthquake with no surface rupture and slip properties controlled by depth, Journal of Geophysical Research-Solid Earth, 110(B3).
Semmling, A. M., J. Beckheinrich, J. Wickert, G. Beyerle, S. Schon, F. Fabra, H. Pflug, K. He, J. Schwabe, and M. Scheinert (2014), Sea surface topography retrieved fromGNSS reflectometry phase data of the GEOHALO flight mission, Geophysical Research Letters, 41(3), 954-960.
Semmling, A. M., et al. (2011), Detection of Arctic Ocean tides using interferometric GNSS-R signals, Geophysical Research Letters, 38.
Semmling, A. M., J. Wickert, S. Schon, R. Stosius, M. Markgraf, T. Gerber, M. Ge, and G. Beyerle (2013), A zeppelin experiment to study airborne altimetry using specular Global Navigation Satellite System reflections, Radio Science, 48(4), 427-440.
Seno, T. (2014), Stress drop as a criterion to differentiate subduction zones where M-w 9 earthquakes can occur, Tectonophysics, 621, 198-210.
Seno, T., and K. Hirata (2007), Did the 2004 Sumatra-Andaman earthquake involve a component of tsunami earthquakes?, Bulletin of the Seismological Society of America, 97(1), S296-S306.
Sens-Schonfelder, C. (2008), Synchronizing seismic networks with ambient noise, Geophysical Journal International, 174(3), 966-970.
Sens-Schonfelder, C., E. Pomponi, and A. Peltier (2014), Dynamics of Piton de la Fournaise volcano observed by passive image interferometry with multiple references, Journal of Volcanology and Geothermal Research, 276, 32-45.
Seo, J., T. Walter, T. Y. Chiou, and P. Enge (2009), Characteristics of deep GPS signal fading due to ionospheric scintillation for aviation receiver design, Radio Science, 44.
Seo, J., T. Walter, and P. Enge (2011), Correlation of GPS signal fades due to ionospheric scintillation for aviation applications, Advances in Space Research, 47(10), 1777-1788.
Seo, K. W., C. R. Wilson, J. L. Chen, and D. E. Waliser (2008), GRACE's spatial aliasing error, Geophysical Journal International, 172(1), 41-48.
Seoane, L., J. Nastula, C. Bizouard, and D. Gambis (2009), The use of gravimetric data from GRACE mission in the understanding of polar motion variations, Geophysical Journal International, 178(2), 614-622.
Seong, Y. B., H. C. Kang, J. H. Ree, C. Yi, and H. Yoon (2011), Constant slip rate during the late Quaternary along the Sulu He segment of the Altyn Tagh Fault near Changma, Gansu, China, Isl. Arc., 20(1), 94-106.
Serafimova, Y. K., and G. N. Kopylova (2010), Intermediate-Term Precursors of Large (M >= 6.6) Kamchatka Earthquakes for the Period from 1987 to 2004: A Retrospective Assessment of Their Information Content for Prediction, J. Volcanol. Seismol., 4(4), 223-231.
Sergeev, I. Y., and V. M. Sorokin (2005), Mechanism of formation of the narrowband spectrum of an LF electromagnetic disturbance registered on the earth's surface during spacecraft launches, Geomagn. Aeron., 45(4), 488-493.
Serpas, J. G., and C. Jekeli (2005), Local geoid determination from airborne vector gravimetry, Journal of Geodesy, 78(10), 577-587.
Serpelloni, E., et al. (2012), GPS observations of coseismic deformation following the May 20 and 29, 2012, Emilia seismic events (northern Italy): data, analysis and preliminary models, Ann. Geophys., 55(4), 759-766.
Serpelloni, E., L. Anderlini, and M. E. Belardinelli (2012), Fault geometry, coseismic-slip distribution and Coulomb stress change associated with the 2009 April 6, Mw 6.3, L'Aquila earthquake from inversion of GPS displacements, Geophysical Journal International, 188(2), 473-489.
Serpelloni, E., R. Burgmann, M. Anzidei, P. Baldi, B. M. Ventura, and E. Boschi (2010), Strain accumulation across the Messina Straits and kinematics of Sicily and Calabria from GPS data and dislocation modeling, Earth and Planetary Science Letters, 298(3-4), 347-360.
Serpelloni, E., G. Casula, A. Galvani, M. Anzidei, and P. Baldi (2006), Data analysis of permanent GPS networks in Italy and surrounding regions: application of a distributed processing approach, Ann. Geophys., 49(4-5), 897-928.
Serpolla, A., S. Bonafoni, R. Biondi, O. Arino, and P. Basili (2009), Validation of near infrared satellite based algorithms to retrieve atmospheric water vapour content over land, Riv. Ital. Telerilevamento, 41(1), 37-44.
Serra, E. M. T., B. Delouis, A. Emolo, and A. Zollo (2013), Combining strong-motion, InSAR and GPS data to refine the fault geometry and source kinematics of the 2011, M-w 6.2, Christchurch earthquake (New Zealand), Geophysical Journal International, 194(3), 1760-1777.
Serrano, E., J. J. de Sanjose, and J. J. Gonzalez-Trueba (2010), Rock glacier dynamics in marginal periglacial environments, Earth Surface Processes and Landforms, 35(11), 1302-1314.
Ses, S., and A. Mohamed (2009), THE SECOND PRECISE LEVELLING NETWORK OF PENINSULAR MALAYSIA, Survey Review, 41(314), 384-394.
Seyrek, A., T. Demir, R. Westaway, H. Guillou, S. Scaillet, T. S. White, and D. R. Bridgland (2014), The kinematics of central-southern Turkey and northwest Syria revisited, Tectonophysics, 618, 35-66.
Sezen, U., F. Arikan, O. Arikan, O. Ugurlu, and A. Sadeghimorad (2013), Online, automatic, near-real time estimation ofGPS-TEC: IONOLAB-TEC, Space Weather-the International Journal of Research and Applications, 11(5), 297-305.
Sgrigna, V., and V. Malvezzi (2003), Preseismic creep strains revealed by ground tilt measurements in central Italy on the occasion of the 1997 Umbria-Marche Apennines earthquake sequence, Pure and Applied Geophysics, 160(8), 1493-1515.
Sgroi, T., R. de Nardis, and G. Lavecchia (2012), Crustal structure and seismotectonics of central Sicily (southern Italy): new constraints from instrumental seismicity, Geophysical Journal International, 189(3), 1237-1252.
Shabala, S. S., J. G. Rogers, J. N. McCallum, O. A. Titov, J. Blanchard, J. E. J. Lovell, and C. S. Watson (2014), The effects of frequency-dependent quasar variability on the celestial reference frame, Journal of Geodesy, 88(6), 575-586.
Shabanian, E., V. Acocella, A. Gioncada, H. Ghasemi, and O. Bellier (2012), Structural control on volcanism in intraplate post collisional settings: Late Cenozoic to Quaternary examples of Iran and Eastern Turkey, Tectonics, 31.
Shabanian, E., O. Bellier, M. R. Abbassi, L. Siame, and Y. Farbod (2010), Plio-Quaternary stress states in NE Iran: Kopeh Dagh and Allah Dagh-Binalud mountain ranges, Tectonophysics, 480(1-4), 280-304.
Shabanian, E., O. Bellier, L. Siame, M. R. Abbassi, D. Bourles, R. Braucher, and Y. Farbod (2012), The Binalud Mountains: A key piece for the geodynamic puzzle of NE Iran, Tectonics, 31.
Shabanian, E., O. Bellier, L. Siame, N. Arnaud, M. R. Abbassi, and J. J. Cocheme (2009), New tectonic configuration in NE Iran: Active strike-slip faulting between the Kopeh Dagh and Binalud mountains, Tectonics, 28.
Shabanian, E., L. Siame, O. Bellier, L. Benedetti, and M. R. Abbassi (2009), Quaternary slip rates along the northeastern boundary of the Arabia-Eurasia collision zone (Kopeh Dagh Mountains, Northeast Iran), Geophysical Journal International, 178(2), 1055-1077.
Shagimuratov, II, A. Krankowski, I. Ephishov, Y. Cherniak, P. Wielgosz, and I. Zakharenkova (2012), High latitude TEC fluctuations and irregularity oval during geomagnetic storms, Earth Planets Space, 64(6), 521-529.
Shah, A. A. (2013), Earthquake geology of Kashmir Basin and its implications for future large earthquakes, Int. J. Earth Sci., 102(7), 1957-1966.
Shahabpour, J. (2010), Tectonic implications of the geochemical data from the Makran igneous rocks in Iran, Isl. Arc., 19(4), 676-689.
Shahgedanova, M., G. Nosenko, I. Bushueva, and M. Ivanov (2012), Changes in area and geodetic mass balance of small glaciers, Polar Urals, Russia, 1950-2008, Journal of Glaciology, 58(211), 953-964.
Shahgedanova, M., V. Popovnin, A. Aleynikov, and C. R. Stokes (2011), Geodetic mass balance of Azarova glacier, Kodar mountains, eastern Siberia, and its links to observed and projected climatic change, Annals of Glaciology, 52(58), 129-137.
Shahvar, M. P., M. Zare, and S. Castellaro (2013), A Unified Seismic Catalog for the Iranian Plateau (1900-2011), Seismological Research Letters, 84(2), 233-249.
Shamir, G., G. Baer, and A. Hofstetter (2003), Three-dimensional elastic earthquake modelling based on integrated seismological and InSAR data: the M-w=7.2 Nuweiba earthquake, gulf of Elat/Aqaba 1995 November, Geophysical Journal International, 154(3), 731-744.
Shan, S., M. Bevis, E. Kendrick, G. L. Mader, D. Raleigh, K. Hudnut, M. Sartori, and D. Phillips (2007), Kinematic GPS solutions for aircraft trajectories: Identifying and minimizing systematic height errors associated with atmospheric propagation delays, Geophysical Research Letters, 34(23).
Shang, S. P., J. K. Shi, P. M. Kintner, W. M. Zhen, X. G. Luo, S. Z. Wu, and G. J. Wang (2008), Response of Hainan GPS ionospheric scintillations to the different strong magnetic storm conditions, Advances in Space Research, 41(4), 579-586.
Shangguan, D. H., S. Y. Liu, Y. J. Ding, Y. S. Zhang, X. Y. Li, and Z. Wu (2010), Changes in the elevation and extent of two glaciers along the Yanglonghe river, Qilian Shan, China, Journal of Glaciology, 56(196), 309-317.
Shangguan, M., M. Bender, M. Ramatschi, G. Dick, J. Wickert, A. Raabe, and R. Galas (2013), GPS tomography: validation of reconstructed 3-D humidity fields with radiosonde profiles, Annales Geophysicae, 31(9), 1491-1505.
Shao, G. F., C. Ji, and D. P. Zhao (2011), Rupture process of the 9 March, 2011 Mw 7.4 Sanriku-Oki, Japan earthquake constrained by jointly inverting teleseismic waveforms, strong motion data and GPS observations, Geophysical Research Letters, 38.
Shao, Z. G., R. S. Fu, T. X. Xue, and J. H. Huang (2008), The numerical simulation and discussion on mechanism of postseismic deformation after Kunlun M-s 8.1 earthquake, Chinese Journal of Geophysics-Chinese Edition, 51(3), 805-816.
Shao, Z. G., Y. Q. Wu, Z. S. Jiang, and L. P. Zhang (2011), The analysis of coseismic slip and near-field deformation about Japanese 9.0 earthquake based on the GPS observation, Chinese Journal of Geophysics-Chinese Edition, 54(9), 2243-2249.
Sharifi, M. A., A. Safari, S. Masoumi, and A. S. Khaniani (2012), Harmonic analysis of the ionospheric electron densities retrieved from FORMOSAT-3/COSMIC radio occultation measurements, Advances in Space Research, 49(10), 1520-1528.
Sharifi, M. A., A. Sam-Khaniani, M. Joghataei, T. Schmidt, S. Masoumi, and J. Wickert (2013), Tropopause analysis over the Iranian region using GPS radio occultation data, Advances in Space Research, 52(9), 1700-1707.
Sharma, D. K., M. S. Khurana, and J. Rai (2011), Ionospheric heating due to solar flares as measured by SROSS-C2 satellite, Advances in Space Research, 48(1), 12-18.
Sharma, M. L., and C. Lindholm (2012), Earthquake Hazard Assessment for Dehradun, Uttarakhand, India, Including a Characteristic Earthquake Recurrence Model for the Himalaya Frontal Fault (HFF), Pure and Applied Geophysics, 169(9), 1601-1617.
Sharma, N., and M. M. Ali (2013), A Neural Network Approach to Improve the Vertical Resolution of Atmospheric Temperature Profiles From Geostationary Satellites, IEEE Geosci. Remote Sens. Lett., 10(1), 34-37.
Sharma, S., N. Dashora, P. Galav, and R. Pandey (2010), Total solar eclipse of July 22, 2009: Its impact on the total electron content and ionospheric electron density in the Indian zone, Journal of Atmospheric and Solar-Terrestrial Physics, 72(18), 1387-1392.
Sharma, S., P. Galav, N. Dashora, R. S. Dabas, and R. Pandey (2012), Study of ionospheric TEC during space weather event of 24 August 2005 at two different longitudes, Journal of Atmospheric and Solar-Terrestrial Physics, 75, 133-140.
Sharma, S., P. Galav, N. Dashora, and R. Pandey (2011), Longitudinal study of the ionospheric response to the geomagnetic storm of 15 May 2005 and manifestation of TADs, Annales Geophysicae, 29(6), 1063-1070.
Shea, J. M., B. Menounos, R. D. Moore, and C. Tennant (2013), An approach to derive regional snow lines and glacier mass change from MODIS imagery, western North America, Cryosphere, 7(2), 667-680.
Shean, D. E., and D. R. Marchant (2010), Seismic and GPR surveys of Mullins Glacier, McMurdo Dry Valleys, Antarctica: ice thickness, internal structure and implications for surface ridge formation, Journal of Glaciology, 56(195), 48-64.
Shellberg, J. G., A. P. Brooks, and C. W. Rose (2013), Sediment production and yield from an alluvial gully in northern Queensland, Australia, Earth Surface Processes and Landforms, 38(15), 1765-1778.
Shelly, D. R. (2009), Possible deep fault slip preceding the 2004 Parkfield earthquake, inferred from detailed observations of tectonic tremor, Geophysical Research Letters, 36.
Shelly, D. R. (2010), Migrating tremors illuminate complex deformation beneath the seismogenic San Andreas fault, Nature, 463(7281), 648-652.
Shelly, D. R., G. C. Beroza, and S. Ide (2007), Complex evolution of transient slip derived from precise tremor locations in western Shikoku, Japan, Geochemistry Geophysics Geosystems, 8.
Shelly, D. R., W. L. Ellsworth, T. Ryberg, C. Haberland, G. S. Fuis, J. Murphy, R. M. Nadeau, and R. Bürgmann (2009), Precise location of San Andreas Fault tremors near Cholame, California using seismometer clusters: Slip on the deep extension of the fault?, Geophysical Research Letters, 36(1).
Shelly, D. R., D. P. Hill, F. Massin, J. Farrell, R. B. Smith, and T. Taira (2013), A fluid-driven earthquake swarm on the margin of the Yellowstone caldera, Journal of Geophysical Research-Solid Earth, 118(9), 4872-4886.
Shen, C. Y., H. Li, S. A. Sun, S. M. Liu, S. B. Xuan, and H. B. Tan (2009), Dynamic variations of gravity and the preparation process of the Wenchuan M(s)8. 0 earthquake, Chinese Journal of Geophysics-Chinese Edition, 52(10), 2547-2557.
Shen, W. B. (2013), A new formulation of Stokes' approach in determining the global gravimetric geoid, Ann. Geophys., 56(3).
Shen, W. B., and J. C. Han (2013), Improved Geoid Determination Based on the Shallow-Layer Method: A Case Study Using EGM08 and CRUST2.0 in the Xinjiang and Tibetan Regions, Terr. Atmos. Ocean. Sci., 24(4), 591-604.
Shen, W. B., R. Sun, W. Chen, Z. G. Zhang, J. Li, J. C. Han, and H. Ding (2011), The expanding Earth at present: evidence from temporal gravity field and space-geodetic data, Ann. Geophys., 54(4), 436-453.
Shen, Z. K., D. D. Jackson, and Y. Y. Kagan (2007), Implications of geodetic strain rate for future earthquakes, with a five-year forecast of M5 earthquakes in southern California, Seismological Research Letters, 78(1), 116-120.
Shen, Z. K., R. W. King, D. C. Agnew, M. Wang, T. A. Herring, D. Dong, and P. Fang (2011), A unified analysis of crustal motion in Southern California, 1970-2004: The SCEC crustal motion map, Journal of Geophysical Research-Solid Earth, 116.
Shen, Z. K., J. N. Lu, M. Wang, and R. Burgmann (2005), Contemporary crustal deformation around the southeast borderland of the Tibetan Plateau, Journal of Geophysical Research-Solid Earth, 110(B11).
Shen, Z. K., J. B. Sun, P. Z. Zhang, Y. G. Wan, M. Wang, R. Burgmann, Y. H. Zeng, W. J. Gan, H. Liao, and Q. L. Wang (2009), Slip maxima at fault junctions and rupturing of barriers during the 2008 Wenchuan earthquake, Nature Geoscience, 2(10), 718-724.
Shennan, I., and S. Hamilton (2006), Coseismic and pre-seismic subsidence associated with great earthquakes in Alaska, Quaternary Science Reviews, 25(1-2), 1-8.
Shepherd, A., A. Hubbard, P. Nienow, M. King, M. McMillan, and I. Joughin (2009), Greenland ice sheet motion coupled with daily melting in late summer, Geophysical Research Letters, 36.
Sherburn, S., and I. A. Nairn (2004), Modelling geophysical precursors to the prehistoric c. AD1305 Kaharoa rhyolite eruption of Tarawera volcano, New Zealand, Natural Hazards, 32(1), 37-58.
Sherburn, S., B. J. Scott, J. Olsen, and C. Miller (2007), Monitoring seismic precursors to an eruption from the Auckland Volcanic Field, New Zealand, N. Z. J. Geol. Geophys., 50(1), 1-11.
Shestakov, N. V., et al. (2011), Present tectonics of the southeast of Russia as seen from GPS observations, Geophysical Journal International, 184(2), 529-540.
Shestakov, N. V., et al. (2012), Analysis of the far-field crustal displacements caused by the 2011 Great Tohoku earthquake inferred from continuous GPS observations, Tectonophysics, 524, 76-86.
Sheu, S. Y., and C. F. Shieh (2004), Viscoelastic-afterslip concurrence: a possible mechanism in the early post-seismic deformation of the M-w 7.6, 1999 Chi-Chi (Taiwan) earthquake, Geophysical Journal International, 159(3), 1112-1124.
Shevchenko, V. I., A. A. Lukk, and M. T. Prilepin (2006), The Sumatra earthquake of December 26, 2004, as an event unrelated to the plate-tectonic process in the lithosphere, Izv.-Phys. Solid Earth, 42(12), 1018-1037.
Shevchenko, V. I., A. A. Lukk, M. T. Prilepin, and R. E. Reilinger (2014), Present-day geodynamics of the Mediterranean-Lesser Caucasus part of the Alpine-Indonesian Mobile Belt, Izv., Phys. Solid Earth, 50(1), 38-56.
Shi, C., S. F. Gu, Y. D. Lou, and M. R. Ge (2012), An improved approach to model ionospheric delays for single-frequency Precise Point Positioning, Advances in Space Research, 49(12), 1698-1708.
Shi, C., Y. Lou, H. Zhang, Q. Zhao, J. Geng, R. Wang, R. Fang, and J. Liu (2010), Seismic deformation of the M-w 8.0 Wenchuan earthquake from high-rate GPS observations, Advances in Space Research, 46(2), 228-235.
Shi, C., Y. D. Lou, W. W. Song, S. F. Gu, C. J. Geng, W. T. Yi, and Y. Y. Liu (2011), A WIDE AREA REAL-TIME DIFFERENTIAL GPS PROTOTYPE SYSTEM IN CHINA AND RESULT ANALYSIS, Survey Review, 43(322), 351-360.
Shi, C., Q. L. Zhao, Z. G. Hu, and J. N. Liu (2013), Precise relative positioning using real tracking data from COMPASS GEO and IGSO satellites, Gps Solutions, 17(1), 103-119.
Shi, C., Q. L. Zhao, M. Li, W. M. Tang, Z. G. Hu, Y. D. Lou, H. P. Zhang, X. J. Niu, and J. N. Liu (2012), Precise orbit determination of Beidou Satellites with precise positioning, Sci. China-Earth Sci., 55(7), 1079-1086.
Shi, F., H. L. He, and Z. Y. Wei (2012), Coseismic horizontal shortening associated with the 2008 Wenchuan Earthquake along the Baishahe segment from high resolution satellite images, J. Asian Earth Sci., 50, 164-170.
Shi, H., D. H. Zhang, Y. Q. Hao, and Z. Xiao (2014), Modeling study of the effect of ionospheric scintillation at low latitudes in China, Chinese Journal of Geophysics-Chinese Edition, 57(3), 691-702.
Shi, J., and Y. Gao (2012), Improvement of PPP-inferred tropospheric estimates by integer ambiguity resolution, Advances in Space Research, 50(10), 1374-1382.
Shi, J. B., C. Q. Xu, J. M. Guo, and Y. Gao (2014), Local troposphere augmentation for real-time precise point positioning, Earth Planets Space, 66.
Shiba, Y., and K. Irikura (2005), Rupture process by waveform inversion using simulated annealing and simulation of broadband ground motions, Earth Planets Space, 57(7), 571-590.
Shiklomanov, N. I., D. A. Streletskiy, J. D. Little, and F. E. Nelson (2013), Isotropic thaw subsidence in undisturbed permafrost landscapes, Geophysical Research Letters, 40(24), 6356-6361.
Shimizu, H., et al. (2006), Aftershock seismicity and fault structure of the 2005 West Off Fukuoka Prefecture Earthquake (M(JMA)7.0) derived from urgent joint observations, Earth Planets Space, 58(12), 1599-1604.
Shimomura, Y., T. Nishimura, and H. Sato (2006), Bubble growth processes in magma surrounded by an elastic medium, Journal of Volcanology and Geothermal Research, 155(3-4), 307-322.
Shin, T. C., C. H. Chang, H. C. Pu, H. W. Lin, and P. L. Leu (2013), The Geophysical Database Management System in Taiwan, Terr. Atmos. Ocean. Sci., 24(1), 11-18.
Shin, T. C., K. W. Kuo, P. L. Leu, C. H. Tsai, and J. S. Jiang (2011), Continuous CWB GPS Array in Taiwan and Applications to Monitoring Seismic Activity, Terr. Atmos. Ocean. Sci., 22(5), 521-533.
Shinagawa, H., T. Iyemori, S. Saito, and T. Maruyama (2007), A numerical simulation of ionospheric and atmospheric variations associated with the Sumatra earthquake on December 26, 2004, Earth Planets Space, 59(9), 1015-1026.
Shinagawa, H., T. Tsugawa, M. Matsumura, T. Iyemori, A. Saito, T. Maruyama, H. Jin, M. Nishioka, and Y. Otsuka (2013), Two-dimensional simulation of ionospheric variations in the vicinity of the epicenter of the Tohoku-oki earthquake on 11 March 2011, Geophysical Research Letters, 40(19), 5009-5013.
Shinohara, M., K. Suyehiro, and T. Murayama (2003), Microearthquake seismicity in relation to double convergence around the Solomon Islands arc by ocean-bottom seismometer observation, Geophysical Journal International, 153(3), 691-698.
Shiokawa, K., et al. (2010), The STEL induction magnetometer network for observation of high-frequency geomagnetic pulsations, Earth Planets Space, 62(6), 517-524.
Shirokov, I. A., N. A. Zharinov, B. P. Pertsev, and K. M. Anokhina (2009), Ground tilt variations in the Klyuchevskoi Volcano Area, Kamchatka, J. Volcanol. Seismol., 3(6), 405-413.
Shirzaei, M., and R. Buergmann (2013), Time-dependent model of creep on the Hayward fault from joint inversion of 18years of InSAR and surface creep data, Journal of Geophysical Research-Solid Earth, 118(4), 1733-1746.
Shirzaei, M., and R. Bürgmann (2012), Topography correlated atmospheric delay correction in radar interferometry using wavelet transforms, Geophysical Research Letters, 39(1), n/a-n/a.
Shirzaei, M., R. Burgmann, J. Foster, T. R. Walter, and B. A. Brooks (2013), Aseismic deformation across the Hilina fault system, Hawaii, revealed by wavelet analysis of InSAR and GPS time series, Earth and Planetary Science Letters, 376, 12-19.
Shirzaei, M., T. Taira, and R. Burgmann (2013), Implications of recent asperity failures and aseismic creep for time-dependent earthquake hazard on the Hayward fault, Earth and Planetary Science Letters, 371-372, 59-66.
Shirzaei, M., and T. R. Walter (2009), Randomly iterated search and statistical competency as powerful inversion tools for deformation source modeling: Application to volcano interferometric synthetic aperture radar data, Journal of Geophysical Research-Solid Earth, 114.
Shirzaei, M., and T. R. Walter (2010), Time-dependent volcano source monitoring using interferometric synthetic aperture radar time series: A combined genetic algorithm and Kalman filter approach, Journal of Geophysical Research-Solid Earth, 115.
Showstack, R. (2010), In the aftermath of Haiti's earthquake; a discussion of lessons learned, Eos, Transactions, American Geophysical Union, 91(6), 55-57.
Showstack, R. (2011), Scientists examine challenges and lessons from Japan's earthquake and tsunami, Eos, Transactions, American Geophysical Union, 92(12), 97-97, 99.
Shrivastava, M. N., and C. D. Reddy (2013), The M (w) 8.6 Indian Ocean earthquake on 11 April 2012: Coseismic displacement, Coulomb stress change and aftershocks pattern, J. Geol. Soc. India, 81(6), 813-820.


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