Inhaltsbereich
Publications
(Co) Author: Sobolev, S.
(since 1997) [ All ]
| Paper (ISI journals) [55] |
Paper (further journals) [5] |
Chapter in Book [7] |
Conference Paper [203] |
Report [2] |
Miscellaneous [2] |
All [274] |
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(2013 online first): Quantifying the thermo-mechanical impact of plume arrival on continental break-up.. Tectonophysics.
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(2013): Why has the Nazca plate slowed since the Neogene?. Geology, 41, 1, 31-34.| EDOC: 18968 | 10.1130/G33497.1 |
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(2012): Modeling suggests that oblique extension facilitates rifting and continental break-up. Journal of Geophysical Research, 117, B08402.
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(2012): Thermomechanical model reconciles contradictory geophysical observations at the Dead Sea Basin. Geochemistry Geophysics Geosystems (G3), 13, Q04011.
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(2012): Modeling evolution of the San Andreas Fault System in northern and central California.. Geochemistry Geophysics Geosystems (G3), 13, Q08016.
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(2012): Constraining kinetics of metastable olivine in the Marianas slab from seismic observations and dynamic models. Tectonophysics, 526-529, 48-55.
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(2011): Investigation on afterslip and steady state and transient rheology based on postseismic deformation and geoid change caused by the Sumatra 2004 earthquake. Geochemistry Geophysics Geosystems (G3), 12, Q07010.
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(2011): Linking mantle plumes, large igneous provinces and environmental catastrophes. Nature, 477, 7364, 312-316.
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(2010): Source modeling and inversion with near real-time GPS: a GITEWS perspective for Indonesia. Natural Hazards and Earth System Sciences (NHESS), 10, 7, 1617-1627.
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(2010): Landslide tsunami hazard in the Indonesian Sunda Arc. Natural Hazards and Earth System Sciences (NHESS), 10, 3, 589-604.
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(2010): Submarine landslides at the eastern Sunda margin: observations and tsunami impact assessment. Natural Hazards, 54, 2, 547-562.
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(2010): Viscosity in transition zone and lower mantle: Implications for slab penetration. Geophysical Research Letters, 37, L09307.
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(2010): Correction to 'Anatomy of the Dead Sea Transform from lithospheric to microscopic scale'. Reviews of Geophysics, 48, RG1003.
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(2009): Tsunami modeling of a submarine landslide in the Fram Strait. Geochemistry Geophysics Geosystems (G3), 10, 4.
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(2009): Are tilt measurements useful in detecting tsunamigenic submarine landslides?. Geochemistry Geophysics Geosystems (G3), 10, Q06002.
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(2009): Siberian meimechites: origin and relation to flood basalts and kimberlites. Russian Geology and Geophysics, 50, 12, 999-1033.
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(2009): Interplay between tectonic and magmatic processes in orogenic crust: Insight from thermo-mechanical modeling. Geochimica et Cosmochimica Acta, 73, 13, Suppl. 1, A1244.| EDOC: 14470 |
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(2009): Constraining rheology and water content in the upper mantle by modeling plate tectonics. Geochimica et Cosmochimica Acta, 73, 13, Suppl. 1.| EDOC: 13555 |
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(2009): Anatomy of the Dead Sea transform from lithospheric to microscopic scale. Reviews of Geophysics, 47, RG2002.
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(2008): High-resolution numerical modeling of stress distribution in visco-elasto-plastic subducting slabs. Lithos, 103, 1-2.
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(2008): Enhanced GPS inversion technique applied to the 2004 Sumatra earthquake and tsunami. Geophysical Research Letters, 35, L08310.
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(2008): Three-dimensional numerical models of the evolution of pull-apart basins. Physics of the Earth and Planetary Interiors, 171, 1-4, 387-399.
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(2008): SLIM3D: A tool for the three-dimensional thermomechanical modeling of the lithospheric deformation with elasto-visco-plastic rheology. Physics of the Earth and Planetary Interiors, 171, 1-4, 55-75.
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(2008): Subduction initiation by thermal-chemical plumes: Numerical studies. Physics of the Earth and Planetary Interiors, 171, 1-4, 296-312.
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(2007): Tsunami early warning using GPS-Shield arrays. Journal of Geophysical Research, 112, B08415.
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(2006): A tomographic image of Indian lithosphere break-off beneath the Pamir-Hindukush region. Geophysical Journal International, 164, 425-440.
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(2006): Moho depth and three-dimensional P and S structure of the crust and uppermost mantle in the Eastern Mediterranean and Middle East derived from tomograpic inversion of local ISC data. Geophysical Journal International, 164, 1, 218-235.
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(2006): P- and S-velocity images of the lithosphere-asthenosphere system in the Central Andes from local-source tomographic inversion. Geophysical Journal International, 167, 1, 106-126.
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(2006): Teleseismic tomography reveals no signature of the Dead Sea Transform in the upper mantle structure. Earth and Planetary Science Letters, 252, 1-2, 189-200.
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(2006): Thickness of the lithosphere east of the Dead Sea Transform. Geophysical Journal International, 167, 2, 845-852.
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(2006): What controls thickness of sediments and lithospheric deformation at a pull-apart basin?. Geology, 34, 5, 389-392.
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(2005): Quantifying different modes of the late Cenozoic shortening in the central Andes. Geology, 33, 8, 621-624.
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(2005): Crustal balance and crustal flux from shortening estimates in the Central Andes. Earth and Planetary Science Letters, 230, 1-2, 113-124.
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(2005): An olivine-free mantle source of Hawaiian shield basalts. Nature, 434, 7033, 590-597.
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(2005): What drives orogeny in the Andes?. Geology, 33, 8, 617-620.
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(2005): Thermo-mechanical model of the Dead Sea Transform. Earth and Planetary Science Letters, 238, 1-2, 78-95.
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(2004): The crustal structure of the Dead Sea Transform. Geophysical Journal International, 156, 3, 655-681.
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(2004): Precise temperature estimation in the Tibetan crust from seismic detection of the alpha-beta quartz transition. Geology, 32, 7, 601-604.
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(2003): Classification of lithology from seismic tomography, a case study from the Messum igneous complex, Namibia.. Journal of Geophysical Research, 108, B3.
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(2003): Seismic observation of narrow plumes in the oceanic upper mantle. Geophysical Research Letters, 30, 6.
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(2003): Seismic imaging of a convergent continental margin and plateau in the central Andes (Andean Continental Research Project 1996 (ANCORP'96)). Journal of Geophysical Research, 108, B7, 2328.
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(2002): Numerical models of crustal scale convection and partial melting beneath the Altiplano-Puna plateau. Earth and Planetary Science Letters, 199, 3-4, 373-388.| EDOC: 2956 |
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(2002): Seismic images of crust and upper mantle beneath Tibet : evidence for Eurasian plate subduction. Science, 298, 5596, 1219-1221.| EDOC: 3403 | Abstract |
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(2002): Moho topography in the central Andes and its geodynamic implication.. Earth and Planetary Science Letters, 199, 3-4, 389-402.
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(2000): Hot and Dry Deep Crustal Xenoliths from Tibet. Science, 287, 5462, 2463-2466.
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(2000): Mapping the Hawaiian plume conduit with converted seismic waves. Nature, 405, 6789, 938-941.
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(2000): A detailed receiver function image of the upper mantle discontinuities in the Japan subduction zone. Earth and Planetary Science Letters, 3-4, 183, 527-541.| EDOC: 1803 | Abstract |
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(2000): Subduction and collision processes in the Central Andes constrained by converted seismic phases. Nature, 408, 6815, 958-961.
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(1999): Major crustal features between the Harz Mountains to the Baltic Shield derived from receiver functions.. Tectonophysics, 314, 1-3, 321-333.| EDOC: 1217 | Abstract |
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(1999): Seismic evidence for a detached Indian lithospheric mantle beneath Tibet. Science, 283, 5406, 1306-1309.
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(1999): Seismic reflection image revealing offset of Andean subduction-zone earthquake locations into oceanic mantle. Nature, 397, 341-344.| EDOC: 1929 | 10.1038/16909 |
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(1999): How robust is isotropic delay time Tomography for anisotropic mantle?. Geophysical Research Letters, 26, 4, 509-512.| EDOC: 8594 |
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(1997): An integrated model for the deep structure of the Chyulu Hills volcanic field, Kenya. Tectonophysics, 278, 1-4, 187-209.
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(1997): Upper mantle temperatures and lithosphere-astenosphere system beneath the French Massif Central constrained by seismic, gravity, petrologic and thermal observations. Tectonophysics, 275, Issues 1-3, 143-164.
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(1997): Styles of continental rifting: crust-mantle detachmend and mantle plumes. Tectonophysics, 278, 1-4, 329-352.


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