Receiver function tomography of the central Tien Shan
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Mikhail K. Kaban | I. M. Aleshin | C. Reigber | S. Roecker | Christoph Reigber | M. Kaban | Steven W. Roecker | G. L. Kosarev | Lev Vinnik | Sergey Oreshin | L. Vinnik | G. Kosarev | I. Aleshin | S. Oreshin
[1] S. Roecker,et al. Towards 3‐D fabric in the continental lithosphere and asthenosphere: The Tien Shan , 2002 .
[2] Peter Molnar,et al. Active faulting and cenozoic tectonics of the Tien Shan, Mongolia, and Baykal Regions , 1979 .
[3] J. Avouac,et al. Active thrusting and folding along the northern Tien Shan and Late Cenozoic rotation of the Tarim relative to Dzungaria and Kazakhstan , 1993 .
[4] S. Roecker,et al. Shear-wave splitting and small-scale convection in the continental upper mantle , 1992, Nature.
[5] S. Roecker,et al. Lithosphere and asthenosphere of the Tien Shan imaged by S receiver functions , 2002 .
[6] P. Lognonné,et al. First seismic receiver functions on the Moon , 2001 .
[7] D. Delvaux,et al. Meso- and Cenozoic Tectonics of the Central Asian Mountain Belt: Effects of Lithospheric Plate Interaction and Mantle Plumes , 1996 .
[8] S. Roecker,et al. Three‐dimensional elastic wave velocity structure of the western and central Tien Shan , 1993 .
[9] L. P. Vinnik,et al. Detection of waves converted from P to SV in the mantle , 1977 .
[10] V. Farra,et al. Subcratonic low‐velocity layer and flood basalts , 2001 .
[11] T. Herring,et al. Relatively recent construction of the Tien Shan inferred from GPS measurements of present-day crustal deformation rates , 1996, Nature.
[12] F. Vernon,et al. Shear‐wave splitting at central Tien Shan: Evidence for rapid variation of anisotropic patterns , 1998 .
[13] M. Strecker,et al. Late Cenozoic tectonism and landscape development in the foreland of the Andes: Northern Sierras Pampeanas (26°–28°S), Argentina , 1989 .
[14] J. Avouac,et al. Intracontinental subduction and Palaeozoic inheritance of the lithosphere suggested by a teleseismic experiment across the Chinese Tien Shan , 2002 .
[15] E. Sobel,et al. Thrusting and exhumation around the margins of the western Tarim basin during the India‐Asia collision , 1997 .
[16] J. Virieux,et al. Three‐dimensional velocity structure and earthquake locations beneath the northern Tien Shan of Kyrgyzstan, central Asia , 1998 .
[17] V. Farra,et al. Upper mantle stratification by P and S receiver functions , 2000 .
[18] Y. Chen,et al. Elevation of the 410 km discontinuity beneath the central Tien Shan: Evidence for a detached lithospheric root , 1997 .
[19] B. Kennett,et al. Traveltimes for global earthquake location and phase identification , 1991 .
[20] S. Roecker,et al. Crustal structure and dynamics of the Tien Shan , 2002 .
[21] L. Ingber. Very fast simulated re-annealing , 1989 .
[22] C. Reigber,et al. New space geodetic constraints on the distribution of deformation in Central Asia , 2001 .
[23] N. A. Haskell. Crustal reflection of plane P and SV waves , 1962 .
[24] L. Vinnik,et al. Structure of the lithosphere and the asthenosphere of the Tien Shan , 1984 .
[25] Charles A. Langston,et al. Structure under Mount Rainier, Washington, inferred from teleseismic body waves , 1979 .
[26] N. Arnaud,et al. Cretaceous–Paleogene basaltic rocks of the Tuyon basin, NW China and the Kyrgyz Tian Shan: the trace of a small plume , 2000 .
[27] P. Molnar,et al. Late Quaternary slip rates across the central Tien Shan, Kyrgyzstan, central Asia , 2002 .
[28] S. Roecker,et al. Receiver functions for the Tien Shan Analog Broadband Network: Contrasts in the evolution of structures across the Talasso‐Fergana Fault , 1993 .
[29] Jia Chengzao,et al. Hydrocarbon Accumulations in the Tarim Basin, China , 1996 .
[30] Hiroo Kanamori,et al. Moho depth variation in southern California from teleseismic receiver functions , 2000 .
[31] Mrinal K. Sen,et al. Application of very fast simulated annealing to the determination of the crustal structure beneath Tibet , 1996 .