| 简历: |
李绍阳,副研究员。主要利用有限元数值模拟和大地测量学数据(GNSS、InSAR)研究大断层地震周期(包括震间、同震和震后三个时期)的基本物理过程和动力学机理。 教育经历: 2012-2016,德国地球科学研究中心(GFZ-Potsdam)/柏林自由大学,博士 2009-2012,北京师范大学,硕士 2010-2011,法国皮埃尔-玛丽居里大学(巴黎第六大学),硕士 2005-2009,北京师范大学,学士 工作经历: 2021/10-至今,中国科学院地质与地球物理研究所,特聘副研究员 2019-2021,日本东京大学地震研究所,JSPS postdoc fellow & Long-term visitor 2018,美国爱荷华大学,博士后 2017,德国地球科学研究中心/加拿大地质调查局,博士后 |
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| 获奖及荣誉: |
2020年度GJI Outstanding Reviewers 2019-2021日本学术振兴会JSPS国际博士后基金
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| 承担科研项目情况: |
- 重点研发项目子课题,2023-2028,主持
中国科学院青年人才项目,2022-2026,主持
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| 代表论著: |
更新于2026/07 一作或通讯论文: - Zhang X.#, S. Li*, J. Shi, Y. Itoh, J.Zhang, A. Kato, and L. Chen (2026). The 2025 Mw7.6 Aomori megathrust earthquake in northeast Japan: Failure of astructurally and rheologically bounded asperitybeneath a cold mantle wedge. Geophysical Research Letters, 53,e2026GL122179. https://doi.org/10.1029/2026GL122179
- Li S.*, and L. Chen (2025), Subductionplate age as a control on elastic upper-plate thickness in Cascadia:Insights from interseismic GNSS observations and implications, Earthand Planetary Physics, 129(8), 2024JB028817. https://doi.org/10.26464/epp2025079
- Zhang X.#, S. Li*, and L. Chen(2025), Unexpected megathrust slip evolution revealed by the 2024 Mw 7.1and the 2025 Mw 6.8 Hyuga-nada earthquakes in southwest Japan. Earthand Planetary Science Letters, 662, https://doi.org/10.1016/j.epsl.2025.119384
- Cui Y. #, S. Li*, L. Chen, andY. Aoki (2025), Large megathrust earthquakes tend to sustain anincreasingly longer duration than expected. GeophysicalResearch Letters, 52(8), https://doi.org/10.1029/2024GL112985.
- Li S.*, V. Schulte-Pelkum,W.D. Barnhart, L. Chen, M. Karplus, and O. Oncken (2024), Weak, VerticallyStronger Main Himalayan Thrust in the India‐Asia Collision. GeophysicalResearch Letters, 51(16), https://doi.org/10.1029/2024GL110222
- Li S.*, and L. Chen (2024),Vertical Crustal Deformation Due to Viscoelastic Earthquake Cycles atSubduction Zones: Implications for Nankai and Cascadia, JGR-solidearth, 129(8), https://doi.org/10.1029/2024JB028817
- Li S.*, and L. Chen (2024).Revisiting interseismic deformation in Nankai: focusing on slip-deficitaccumulation in the ETS zone and comparison with Cascadia. Earth,Planets and Space, 50(11), https://doi.org/10.1186/s40623-024-02054-z
- Li S.*, and L. Chen(2023). How Long Can the Postseismic and Interseismic Phases of GreatSubduction Earthquake Sustain? Toward an Integrated Earthquake‐CyclePerspective. Geophysical Research Letters, 50(11),https://doi.org/10.1029/2023GL103976
- Li S.* and L. Chen (2022),Elastic slab in viscoelastic mantle: Effects on determining megathrust slipand mantle viscosity during postseismic and interseismic phases, JGR-solidearth, 127(8), https://doi.org/10.1029/2022JB024730
- Li S.* and W.D. Barnhart (2020),Impacts of Topographic Relief and Crustal Heterogeneity on CoseismicDeformation and Inversions for Fault Geometry and Slip: A Case Study ofthe 2015 Gorkha Earthquake in the Central Himalayan Arc, G-cubed, 21(12), https://doi.org/10.1029/2020GC009413
- Li S.*, J. Fukuda, and O.Oncken (2020), Geodetic evidence of time-dependent viscoelastic interseismicdeformation in the southwest Japan subduction zone, Geophysical Research Letters, 47(4), https://doi.org/10.1029/2019GL085551
- Shi F.#, S. Li*, and M.Moreno (2020), Megathrust locking and viscous mantle flow inducecontinental shortening in Central Andes, Pure and AppliedGeophysics, 177(6), 2841-2852, https://doi.org/10.1007/s00024-019-02403-0
- Li S.*, J.Bedford, M. Moreno, W. Barnhart, M. Rosenau, and O. Oncken (2018),Spatiotemporal variation of mantle viscosity and the presence ofcratonic mantle inferred from 8 years of postseismic deformationfollowing the 2010 Maule Chile earthquake, G-cubed,19(9), https://doi.org/10.1029/2018GC007645
- Li S.*, W.Barnhart, and M. Moreno (2018), Geometrical and frictional effects on incompleterupture and shallow slip deficit in ramp-flat structures, Geophysical Research Letters,45, https://doi.org/10.1029/2018GL079185
- Li S., K. Wang*, Y. Wang,Y. Jiang and S. Dosso (2018), Geodetically inferred locking state of theCascadia megathrust based on a viscoelastic Earth model, JGR-solidearth, 123, https://doi.org/10.1029/2018JB015620
- Li S.*, M. Moreno, J.Bedford, M. Rosenau, O. Heidbach, D. Melnick, and O. Oncken (2017),Postseismic uplift of the Andes following the 2010 Maule earthquake:Implications for mantle rheology, GeophysicalResearch Letters, 44, 1768-1776, https://doi.org/10.1002/2016GL071995
- Li S.*, M. Moreno, J.Bedford, M. Rosenau, and O. Oncken (2015), Revisiting visco-elasticeffects on interseismic deformation and locking degree: a case study ofthe Peru - North Chile subduction zone, JGR-Solid Earth, 120, 4522-4538, https://doi.org/10.1002/2015JB011903
- Li S.*, M. Moreno, M.Rosenau, D. Melnick, and O. Oncken (2014), Splay fault triggering by greatsubduction earthquakes inferred from finite element models, Geophysical Research Letters, 41,385-391, https://doi.org/10.1002/2013GL058598
合作论文: - Oryan B., A. A. Gabriel, R. B. Bürgmann, E. Calais,G. Cheng, M. Chlieh, ... S. Li., ... and S. B. Yu (2026). TheCoupling Cloud: A community database of megathrust kinematic couplingmodels. Seismica, 5(1).https://doi.org/10.26443/seismica.v5i1.2314
- 陈凌,褚杨,高一帆,李绍阳,王旭,梁晓峰,赵亮 (2025).大陆碰撞带结构与变形的时空不均一性. 中国科学: 地球科学, 55(12):4120-4139. https://doi.org/10.1360/SSTe-2024-0358.
- Jara-Munoz*, J., D. Melnick, S. Li, A.Socquet, J. Cortés-Aranda, D. Brill, and M. R. Strecker (2022), Thecryptic seismic potential of the Pichilemu blind fault in Chile revealedby off-fault geomorphology. Nature Communications, 13(1),3371. https://doi.org/10.1038/s41467-022-30754-1
- Cheng, G.*, W.D. Barnhart, and S. Li (2022),Power-Law Viscoelastic Flow of the Lower Accretionary Prism in theMakran Subduction Zone Following the 2013 Baluchistan Earthquake. JGR-solidearth, 127, https://doi.org/10.1029/2022JB024493
- Guo, Z.*, M. Motagh, J.C. Hu, G. Xu, M. H. Haghighi,A. Bahroudi, ... and S. Li (2022), Depth-varying Friction on aRamp-flat Fault Illuminated by∼ 3-year InSARObservations Following the 2017 Mw 7.3 Sarpol-e Zahab Earthquake. JGR-solidearth, https://doi.org/10.1029/2022JB025148
- Schurr B.*, M. Moreno, A. M. Tréhu, J.Bedford, J. Kummerow, S. Li, and O. Oncken (2020), Forming a MogiDoughnut during the inter- and pre-seismic phase of the 2014 M8.1 Iquique,Northern Chile Earthquake, GeophysicalResearch Letters, https://doi.org/10.1029/2020GL088351
- Yousefi M.*, G. Milne, S. Li, K. Wang,and A. Bartholet (2020), Constraining Interseismic Deformation of theCascadia Subduction Zone: New Insights from Estimates of Vertical LandMotion over Different Timescales, JGR-solid earth, https://doi.org/10.1029/2019JB018248
- Moreno M.*, S. Li, D. Melnick, et al. (2018), Chilean megathrust earthquakerecurrence linked to frictional contrast at depth, Nature Geoscience,11, 285–290, https://doi.org/10.1038/s41561-018-0089-5
- Melnick D.*, S. Li, M. Moreno, et al. (2018), Back to full interseismicplate locking decades after the giant 1960 Chile earthquake, NatureCommunications, 9.1, 3527,https://doi.org/10.1038/s41467-018-05989-6
- Peterson K., W. Barnhart*, and S. Li (2018), Viscousaccretionary prisms: viscoelastic relaxation of the Makran accretionaryprism following the 2013 Baluchistan, Pakistan earthquake, JGR-solidearth, https://doi.org/10.1029/2018JB016057
- Barnhart W.*, C. Brengman, S. Li, and P. Katherine (2018),Ramp-Flat basement structures of the Zagros Mountains inferred fromco-seismic slip and afterslip of the 2017 Mw7.3 Darbandikhan, Iran/IraqEarthquake, Earth and Planetary Science Letters, 496, 96-107, https://doi.org/10.1016/j.epsl.2018.05.036
- MelnickD.*, M. Moreno, J. Quinteros, J. Baez, Z. Deng, S. Li, and O. Oncken (2017), The super-interseismic phase ofthe megathrust earthquake cycle in Chile, Geophysical Research Letters, 44,784–791, https://doi.org/10.1002/2016GL071845
- Bedford J.*, M. Moreno, S. Li, J. Baez, O. Oncken, M.Bevis, D. Lange, and O. Heidbach (2016), Separating simultaneouspostseismic processes: An application of the postseismic straighteningmethod to the Maule 2010 cGPS, JGR-solid earth, 121, 7618–7638, https://doi.org/10.1002/2016JB013093
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