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姓名: 王新 性别:
职称: 特聘研究员 学历: 博士
电话: 010-82998600 传真: 010-62010846
Email: wangxin@mail.iggcas.ac.cn 邮编: 100029
地址: 北京朝阳区北土城西路19号,中科院地质与地球物理研究所
更多信息:
EnglishGoogle Scholar 地球与行星物理院重点实验室 地球-行星内部结构与过程学科组
 
简历:

  王新,副研究员。中国地震学会第十届青年科技工作委员会委员、《地球物理学报》编委。研究方向主要包括俯冲带精细结构成像,中小地震震源参数及震源物理,光纤地震仪研究等。目前以第一/通讯作者在Nature Geoscience、EPSL、 JGR-Solid Earth 等杂志共发表学术论文13篇。

教育及工作经历

  • 2020/11 – 至今     副研究员,中国科学院地质与地球物理研究所(IGGCAS)
  • 2019/01 – 2020/10  博士后, 地震实验室, 加州理工学院(Seismo Lab, Caltech)
  • 2017/01 – 2018/12  博士后, 新加坡地球观测中心(EOS), 新加坡南洋理工大学(NTU)
  • 2015/07 – 2016/08  访问博士生, 新加坡地球观测中心(EOS), 新加坡南洋理工大学(NTU)
  • 2011/09 – 2017/01  硕博连读,中国科学院地质与地球物理研究所(IGGCAS)
  • 2007/09 – 2011/06  本科, 地球探测科学与技术学院, 吉林大学(JLU)
 
研究方向:
  • 壳幔、俯冲带精细结构成像
  • 地震震源参数、断层结构、震源物理
  • 光纤地震仪研究
 
学科类别:
地球物理学
 
职务:
 
社会任职:
 
获奖及荣誉:
 
承担科研项目情况:
 
代表论著:

Updated in 2021/11

第一及通讯(*)作者论文

2021

[13] 张建勇, 王新*, 陈凌, 刘杰, (2021), 基于余震重定位和震源机制解研究青海玛多MS7.4地震序列的发震构造和断裂形态. 地球物理学报

[12] Y. Cheng, X. Wang*, Z. Zhan, & Y. Ben‐Zion, (2021), Isotropic source components of events in the 2019 Ridgecrest, California, earthquake sequence. Geophysical Research Letters

[11] X. Wang, Z. Zhan, M. Zhong, P. Persaud, & R.W. Clayton, (2021b), Urban Basin Structure Imaging Based on Dense Arrays and Bayesian Array‐Based Coherent Receiver Functions. Journal of Geophysical Research: Solid Earth

[10] X. Wang, Z. Zhan, E.F. Williams, M.G. Herráez, H.F. Martins, & M. Karrenbach, (2021a), Ground vibrations recorded by fiber-optic cables reveal traffic response to COVID-19 lockdown measures in Pasadena, California. Communications Earth & Environment

2020

[9] X. Wang, Q. F. Chen, F. Niu, S. Wei, J. Ning, J. Li, W. Wang, J. Buchen, L. Liu, (2020c), Distinct Slab Interfaces within the Mantle Transition Zone. Nature Geoscience [highlighted by EurekAlert, Phys.org, Science Bulletin et al.]

[8] X. Wang, Williams, E. F., Karrenbach, M., Herráez, M. G., Martins, H. F., & Zhan, Z. (2020b). Rose Parade Seismology: Signatures of Floats and Bands on Optical Fiber. Seismological Research Letters [highlighted by Science, AGU EOS, SSA et al.]

[7] X. Wang, & Zhan, Z. (2020a). Seismotectonics and fault geometries of the 2019 Ridgecrest sequence: insight from aftershock moment tensor catalog using 3D Green’s functions. Journal of Geophysical Research: Solid Earth 

2019

[6] X. Wang, & Zhan, Z. (2019). Moving from 1D to 3D velocity model: automated waveform-based earthquake moment tensor inversion in the Los Angeles region. Geophysical Journal International

[5] X. Wang, S. Wei, Y. Wang, P. Maung Maung, J. Hubbard, P. Banerjee, H. Bor-Shouh, K. MoeOo, T. Bodin, and A. Foster (2019), A 3D Shear-Wave Velocity Model for Myanmar Region, Journal of Geophysical Research: Solid Earth, 124, 504 – 526 [JGR-Solid Earth Featured Article] [JGR-Solid Earth 2018-2019 most downloaded paper award]

 

2018

[4] X. Wang, K. Bradley, S. Wei, W. Wu (2018a), Active backstop faults in the Mentawai region of Sumatra, Indonesia, revealed by teleseismic broadband waveform modeling, Earth and Planetary Science Letters, 483, 29-38 

2017

[3] X. Wang, S. Wei, and W. Wu (2017b), Double-ramp on the Main Himalayan Thrust revealed by broadband waveform modeling of the 2015 Gorkha earthquake sequence, Earth and Planetary Science Letters, 473, 83-93.

[2] X. Wang, J. Li, and Q. F. Chen (2017a), Topography of the 410 km and 660 km discontinuities beneath the Japan Sea and adjacent regions by analysis of multipleScS waves, Journal of Geophysical Research: Solid Earth, 122(2), 1264-1283.

 

2016

[1] X. Wang, Q. F. Chen, J. Li, and S. J. Wei (2016), Seismic Sensor Misorientation Measurement Using P-Wave Particle Motion: An Application to the NECsaids Array, Seismological Research Letters, 84(4), 901-911.

 

合作作者论文

[10] S. Wu, J. Yao, S. Wei, J. Hubbard, Y. Wang, Y.M.M. Htwe, M. Thant, X. Wang, K. Wang, T. Liu, Q. Liu, & P. Tong, (2021), New insights into the structural heterogeneity and geodynamics of the Indo-Burma subduction zone from ambient noise tomography, Earth and Planetary Science Letters

[9] D. Nurfiani, X. Wang, H. Gunawan, H. Triastuty, D. Hidayat, S.J. Wei, B. Taisne, C. Bouvet de Maisonneuve, (2021), Combining petrology and seismology to unravel the plumbing system of a typical arc volcano: An example from Marapi, West Sumatra, Indonesia, Geochemistry, Geophysics, Geosystems

[8] Z, Jia., X. Wang, Z. Zhan. (2020). Multifault Models of the 2019 Ridgecrest Sequence Highlight Complementary Slip and Fault Junction Instability. Geophysical Research Letters

[7] Shi, X., Tapponnier, P., Wang, T., Wei, S., Wang, Y., Wang, X., & Jiao, L. (2019). Triple junction kinematics accounts for the 2016 Mw 7.8 Kaikoura earthquake rupture complexity. Proceedings of the National Academy of Sciences, 116(52), 26367–26375.

[6] Ojo, A. O., Zhao, L., & X. Wang (2019). Estimations of Sensor Misorientation for Broadband Seismic Stations in and around Africa. Seismological Research Letters, 90(6), 2188–2204.

[5] Ross, Z. E., Idini, B., Jia, Z., Stephenson, O. L., Zhong, M., Wang, X., et al. (2019). Hierarchical interlocked orthogonal faulting in the 2019 Ridgecrest earthquake sequence. Science, 366(6463), 346–351.

[4] Materna, K., S. Wei, X. Wang, H. Luo, T. Wang, R. Salman, R. Bu?rgmann (2019), Source characteristics of the 2017 Mw 6.4 Moijabana, Botswanan earthquake, a rare lower-crustal event within an ancient zone of weakness. Earth and Planetary Science Letters, 506, 348-359.

[3] Wei, S., Chen, M., X. Wang, Graves, R., Lindsey, E., Wang, T., et al. (2018). The 2015 Gorkha (Nepal) earthquake sequence: I. Source modeling and deterministic 3D ground shaking. Tectonophysics, 722, 447–461.

[2] Wang, Y., S. Wei, X. Wang, E. O. Lindsey, F. Tongkul, P. Tapponnier, K. Bradley, C.-H. Chan, E. M. Hill, and K. Sieh (2017b), The 2015 Mw 6.0 Mt. Kinabalu earthquake: an infrequent fault rupture within the Crocker fault system of East Malaysia, Geoscience Letters, 4(1), 6.

[1] Li, J., X. Wang, X. J. Wang, and D. A. Yuen (2013), P and SH velocity structure in the upper mantle beneath Northeast China: Evidence for a stagnant slab in hydrous mantle transition zone, Earth and Planetary Science Letters., 367, 71-81.


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