A benchmark comparison of spontaneous subduction models—Towards a free surface H Schmeling, AY Babeyko, A Enns, C Faccenna, F Funiciello, T Gerya, ... Physics of the Earth and Planetary Interiors 171 (1-4), 198-223, 2008 | 386 | 2008 |
Quasi‐static finite element modeling of seismic attenuation and dispersion due to wave‐induced fluid flow in poroelastic media B Quintal, H Steeb, M Frehner, SM Schmalholz Journal of Geophysical Research: Solid Earth 116 (B1), 2011 | 200 | 2011 |
Tectonic overpressure in weak crustal‐scale shear zones and implications for the exhumation of high‐pressure rocks SM Schmalholz, YY Podladchikov Geophysical Research Letters 40 (10), 1984-1988, 2013 | 163 | 2013 |
Time reverse modeling of low‐frequency microtremors: Application to hydrocarbon reservoir localization B Steiner, EH Saenger, SM Schmalholz Geophysical research letters 35 (3), 2008 | 153 | 2008 |
A passive seismic survey over a gas field: Analysis of low-frequency anomalies EH Saenger, SM Schmalholz, MA Lambert, TT Nguyen, A Torres, ... Geophysics 74 (2), O29-O40, 2009 | 131 | 2009 |
Buckling versus folding: importance of viscoelasticity SM Schmalholz, Y Podladchikov Geophysical Research Letters 26 (17), 2641-2644, 1999 | 124 | 1999 |
Low-frequency reflections from a thin layer with high attenuation caused by interlayer flow B Quintal, SM Schmalholz, YY Podladchikov Geophysics 74 (1), N15-N23, 2009 | 123 | 2009 |
Viscous heating allows thrusting to overcome crustal-scale buckling: Numerical investigation with application to the Himalayan syntaxes JP Burg, SM Schmalholz Earth and Planetary Science Letters 274 (1-2), 189-203, 2008 | 121 | 2008 |
Dynamics of slab detachment T Duretz, SM Schmalholz, TV Gerya Geochemistry, Geophysics, Geosystems 13 (3), 2012 | 114 | 2012 |
Relationship between tectonic overpressure, deviatoric stress, driving force, isostasy and gravitational potential energy SM Schmalholz, S Medvedev, SM Lechmann, Y Podladchikov Geophysical Journal International 197 (2), 680-696, 2014 | 94 | 2014 |
Control of folding by gravity and matrix thickness: Implications for large‐scale folding SM Schmalholz, YY Podladchikov, JP Burg Journal of Geophysical Research: Solid Earth 107 (B1), ETG 1-1-ETG 1-16, 2002 | 92 | 2002 |
A spectral/finite difference method for simulating large deformations of heterogeneous, viscoelastic materials SM Schmalholz, YY Podladchikov, DW Schmid Geophysical Journal International 145 (1), 199-208, 2001 | 83 | 2001 |
Finite amplitude folding: transition from exponential to layer length controlled growth SM Schmalholz, YY Podladchikov Earth and Planetary Science Letters 179 (2), 363-377, 2000 | 82 | 2000 |
Finite-element simulations of Stoneley guided-wave reflection and scattering at the tips of fluid-filled fractures M Frehner, SM Schmalholz Geophysics 75 (2), T23-T36, 2010 | 78 | 2010 |
Low‐frequency microtremor anomalies at an oil and gas field in Voitsdorf, Austria MA Lambert, SM Schmalholz, EH Saenger, B Steiner Geophysical Prospecting 57 (3), 393-411, 2009 | 78 | 2009 |
The importance of structural softening for the evolution and architecture of passive margins T Duretz, B Petri, G Mohn, SM Schmalholz, FL Schenker, O Müntener Scientific reports 6 (1), 38704, 2016 | 75 | 2016 |
Time reverse reservoir localization E Saenger, B Steiner, S Schmalholz US Patent 7,675,815, 2010 | 74 | 2010 |
Strain and competence contrast estimation from fold shape SM Schmalholz, YY Podladchikov Tectonophysics 340 (3-4), 195-213, 2001 | 74 | 2001 |
Comparison of finite difference and finite element methods for simulating two-dimensional scattering of elastic waves M Frehner, SM Schmalholz, EH Saenger, H Steeb Physics of the earth and planetary interiors 171 (1-4), 112-121, 2008 | 73 | 2008 |
Evolution of pinch-and-swell structures in a power-law layer SM Schmalholz, DW Schmid, RC Fletcher Journal of Structural Geology 30 (5), 649-663, 2008 | 73 | 2008 |