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Earth and Planetary Science Letters, ISSN 0012-821X, 05/1996, Volume 140, Issue 1-4, pp. 83 - 96
Strong seismic anisotropy beneath Tibet has recently been reported from the study of SKS shear wave splitting. The fast split waves are generally polarized in... 
lithosphere | SKS-waves | time variations | Tibet | Neotectonics | Time variations | Lithosphere | ROTATION | KINEMATIC MODEL | TECTONICS | GEOCHEMISTRY & GEOPHYSICS | UPPER MANTLE TOMOGRAPHY | EVOLUTION | PLATE MOTION MODEL | PLASTIC-DEFORMATION | VELOCITIES | OLIVINE | Anisotropy | Analysis
Journal Article
GEOPHYSICAL JOURNAL INTERNATIONAL, ISSN 0956-540X, 08/2015, Volume 202, Issue 2, pp. 1289 - 1316
Journal Article
Journal of Geophysical Research: Solid Earth, ISSN 0148-0227, 03/2012, Volume 117, Issue B3, p. n/a
The behavior of deep lithospheric processes in continental collision are frequently speculated on, but poorly understood. In this study we build on previous... 
delamination | mantle lithosphere | orogenesis | subduction | continental collision | numerical modeling | GEOCHEMISTRY & GEOPHYSICS | NONLINEAR VISCOSITY | NEW-ZEALAND | TECTONICS | RAYLEIGH-TAYLOR INSTABILITY | MANTLE BENEATH TIBET | PLATEAU | SHEAR LOCALIZATION | ZONE | CONVERGENCE | SOUTH ISLAND | Magma | Lithosphere | Basins
Journal Article
Journal of Asian Earth Sciences, ISSN 1367-9120, 2009, Volume 36, Issue 4, pp. 289 - 302
Relative SV and SH wave speeds are generally attributed to radial seismic anisotropy which can be used as the indicator of crust/mantle deformation styles.... 
Tomography | Surface waves | Qinghai-Tibet Plateau | Radial anisotropy | RAYLEIGH | FORM INVERSION | IBERIAN PENINSULA | SEISMIC ANISOTROPY | LOVE | ATLANTIC-OCEAN | GEOSCIENCES, MULTIDISCIPLINARY | SURFACE-WAVE DISPERSION | VELOCITY STRUCTURE | INDIAN-OCEAN | Earth | Crust | Wave propagation | Orogeny | Geology | Anisotropy | Analysis | Geophysics | Seismic waves | Mantle | Plateaus
Journal Article
中国科学:地球科学英文版, ISSN 1674-7313, 2011, Volume 54, Issue 10, pp. 1551 - 1562
Triplicate waveform modeling is used to resolve SH (Vs) and P (Vp) wave velocity structures in the upper mantle transition zone (TZ) beneath northwestern (NW)... 
西藏 | 地幔过渡带 | 差分模式 | 西北 | 地带 | 不连续性 | 震源深度 | P波速度结构 | Earth Sciences | mantle transition zone | Earth Sciences, general | northwestern Tibet | seismic velocity | DISCONTINUITY | HYDROUS RINGWOODITE | SUBDUCTION | IZU-BONIN | MANTLE | PHASE | GEOSCIENCES, MULTIDISCIPLINARY | CALIFORNIA | TRANSFORMATIONS | WATER | Earth | Executives | Wave propagation | Analysis | Geophysics | Tectonics (Geology) | Seismic waves | Mantle | Seismology | Velocity | Plate tectonics
Journal Article
Earth and Planetary Science Letters, ISSN 0012-821X, 04/2004, Volume 221, Issue 1-4, pp. 103 - 115
Journal Article
Gondwana Research, ISSN 1342-937X, 01/2017, Volume 41, pp. 390 - 399
The complexity of the Himalayan–Tibetan lithospheric deformation is evident from widespread seismicity and diverse focal mechanism solutions. Here we... 
Seismogenic thickness | Earthquake focal depths | Tibetan plateau | Focal mechanisms | FAULT PLANE SOLUTIONS | TIEN-SHAN | PAMIR | MANTLE BENEATH TIBET | ACTIVE TECTONICS | DEFORMATION | SOURCE PARAMETERS | GEOSCIENCES, MULTIDISCIPLINARY | PLATEAU | VELOCITY STRUCTURE | INDIA | Wave propagation | Sedimentary basins | Earthquakes | Seismology | Lithosphere
Journal Article
Journal of Geophysical Research: Solid Earth, ISSN 2169-9313, 02/2019, Volume 124, Issue 2, pp. 2057 - 2079
Journal Article
Journal of Asian Earth Sciences, ISSN 1367-9120, 04/2012, Volume 48, pp. 93 - 110
► It provides lithospheric structures of Himalaya–Tibet collision zone based on CHAMP-GRACE 2008 satellite gravity data. ► It is corrected using topography... 
Low and high pass filters | Satellite | Geoid | Lithosphere | Gravity | Spectrum | MANTLE BENEATH TIBET | MOHO UNDULATIONS | SOUTHERN TIBET | DEFORMATION | REGION | INDIAN LITHOSPHERE | GEOSCIENCES, MULTIDISCIPLINARY | EVOLUTION | PLATEAU | CRUSTAL STRUCTURE | CONTINENTAL SUBDUCTION | Strike-slip faults (Geology) | Seismology | Earthquakes | Analysis
Journal Article
Geophysical Journal International, ISSN 0956-540X, 05/1996, Volume 125, Issue 2, pp. 355 - 370
SUMMARY The simulated annealing method has recently been applied to several multiparameter optimization problems, including those of geophysical inversion. A... 
inversion | Tibet | crustal structure | Inversion | Crustal structure | VELOCITY | COLLISION | BELTS | UPPER MANTLE | CONTINENTAL DEFORMATION | GEOCHEMISTRY & GEOPHYSICS | PLATEAU | OPTIMIZATION | EARTHQUAKES | LATERAL VARIATIONS
Journal Article
Geophysical Journal International, ISSN 0956-540X, 10/2011, Volume 187, Issue 1, pp. 414 - 420
SUMMARY Detailed high‐resolution images of the crust–mantle and lithosphere–asthenosphere boundaries (the Moho and the LAB, respectively) have been well... 
Body waves | Asia | Dynamics of lithosphere and mantle | SEISMIC EVIDENCE | MANTLE BENEATH TIBET | ANISOTROPY BENEATH | SUBDUCTION | HIMALAYA | SOUTHERN TIBET | GEOCHEMISTRY & GEOPHYSICS | EVOLUTION | PLATEAU | CRUSTAL STRUCTURE | TIBET COLLISION ZONE | Earth | Mantle | Mines and mineral resources | Lithosphere | Mountains | Himalayas | Images | Sutures | Boundaries | Tibet | Three dimensional
Journal Article
Tectonics, ISSN 0278-7407, 01/2003, Volume 22, Issue 1, pp. 1001 - n/a
Journal Article