师资队伍
孙新蕾 研究员
作者:孙新蕾2022/07/04



孙新蕾

成都理工大学  行星科学国际研究中心  教授

邮箱:xsun@cdut.edu.cn


教育经历

2002.05-2007.05 美国伊利诺伊大学香槟分校,地震学, 博士,导师: Xiaodong Song

2000.08-2002.05 美国伊利诺伊大学香槟分校, 地震学,硕士,导师: Xiaodong Song

1997.09-2000.08  中国科学技术大学, 地球物理, 硕士, 导师:徐果明

1998年获中国科学技术大学计算机应用工程学士双学位

1993.09-1997.07中国科学技术大学,地球物理,学士(同年获郭沫若奖学金)


科研与学术工作经历

2020/07-至今 成都理工大学行星科学国际研究中心 教授

2012/06-2020/6 中国科学院广州地球化学研究所 研究员

2009/02-2012/06 华盛顿大学(圣路易斯)行星与地球科学系,博士后,合作导师 Douglas A. Wiens (AGU fellow)

2007/05-2009/01 伊利诺伊大学香槟分校 地质系, 博士后, 合作导师 Xiaodong Song


主持及参加科研项目

1.地球内核顶部结构的“半球"变化分界面性质, 自然科学基金面上项目, 主持, 2021-2024

2.印太交汇区地幔蛇纹石分布与水循环, 中科院先导B子课题,  主持, 2020-2024

3.行星内部圈层结构特征, 中科院先导B子课题,  骨干,   2020-2024

4.核幔边界超低速区(ULVZ)的分布和横向变化, 自然科学基金面上项目, 主持, 2018-2021

5.利用城市噪声研究广州市地表浅层结构、场地响应及估算地质特征, 广州市科技计划重点项目, 主持, 2017-2020

6.广东新丰江水库附近的精细断层结构及地震活动研究, 同位素地球化学国家重点实验室开放基金,  共同主持, 2016-2018

7.关键廊带的综合地球物理探测与深部结构 “国家重点研发计划“燕山期重大地质事件的深部过程与资源效应”子课题, 骨干 2016-2020

8.核幔边界结构及其动力学效应, 中科院先导B子课题,  主持, 2016-2021

9.核幔边界地形起伏及D”层结构研究, 国家重点基础研发计划,  骨干, 2013-2018, 已结题

10.地核和下地幔底部结构和动力学探测, 自然科学基金重点项目, 骨干, 2013-2018, 已结题

11.内核浅层的各向异性和衰减结构, 自然科学基金面上项目, 主持, 2013-2016, 已结题

12.中国科学院百人计划,  主持, 2014-2016, 已结题


研究方向

地球/行星深部结构和动力学以及浅地表结构、灾害特征研究,用以约束、提高我们对行星演化、物质组成和浅部过程的认识。

主要研究领域包括: 地球/行星内部各圈层(岩石圈、地幔、 核幔边界,地核等)结构成像和动力学过程;诱发地震;利用密集台网进行浅地表结构探测和监测; 机器学习在信号处理和结构反演中的应用。


发表论文

1) An Fan, Xinlei Sun*, Zhou Zhang, Peng Zhang, Jianye Zong, From subduction to LLSVP: The Core- mantle Boundary heterogeneities across North Atlantic, Geochm. Geophys. Geosys, 2022,  https://doi.org/10.1029/2021GC009879

2) Fan, An and Xinlei Sun*, Origin of ULVZs near the African LLSVP: Implications from their distribution and characteristics, Earthquake Science, 2021, 34(4) :299-309. doi: 10.29382/eqs-2021-0042

3) He, L., Sun, X.*, Li, P., Ai, S., & Li, J., Lithospheric structure near Jiuyishan, South China: Implications for asthenospheric upwelling and lithospheric modification. Geophysical Research Letters, 2021, 48, e2021GL096572. https://doi.org/10.1029/2021GL096572

4) He, L., Wu, Q.*, Chen, X., Sun, X., Guo, Z., & Chen, Y. J. Detailed 3D Seismic Velocity Structure of the Prague, Oklahoma Fault Zone and the Implications for Induced Seismicity. Geophysical Research Letters, 2021, e2021GL096137.

5) 宗健业,孙新蕾*,张鹏,利用HVSR方法研究广州地区的场地效应及估算地震灾害特征, 地震地质,2020, 42(3)628-639.

6) Qin, Jialing, Xinlei. Sun*, Peng, Zhang, et. al., Regional variations of velocity and attenuation anisotropy at the top 300 km of the inner core, Chinese J. Geophys., 2020, 63(6): 2199-2209 . DOI:10.6038/cjg2020N0209

(秦加岭,孙新蕾*,张鹏,范安,地球内核顶部300km速度和衰减各向异性的区域变化,地球物理学报,2020 , 63(6): 2199-2209 . DOI:10.6038/cjg2020N0209)

7) Wang, Shuang, Xinlei Sun*, Lanbo Liu, Jianye Zong, Sub-surface structure and site effect extracted from ambient noise in metropolitan Guangzhou, China, Engineering Geology, 2020, https://doi.org/10.1016/j.enggeo.2020.105526

8) Xiao, Z., Fuji*, N., Iidaka, T., Gao, Y., Sun, X., & Liu, Q. Seismic structure beneath the Tibetan Plateau from iterative finite‐frequency tomography based on ChinArray: New insights into the Indo‐Asian collision. J. Geophys. Res.: Solid Earth, 2020,doi.org/10.1029/2019JB018344

9) Li J M, Sun X L*, Wang S, et al. 2020. Crustal shear wave velocity structure near the Jiuyishan area from seismic ambient noise tomography: Implications for tectonic evolution in South China. Chinese J. Geophys. (in Chinese), 63(1): 184-195, doi: 10.6038/cjg2020N0036.  

(李健明, 孙新蕾, 王爽, 等. 2020. 九嶷山及邻区地壳结构噪声成像及其对华南地区的构造演化启示. 地球物理学报, 63(1): 184-195, doi: 10.6038/cjg2020N0036.  )

10) Qin, Jialing, Xinlei. Sun*, An, Fan, Variations of velocity and attenuation anisotropy structures in the uppermost inner core beneath the central Pacific region, Geophys. Res. Lett., 2019,46(21), 11811-11819. doi:10.1029/2019GL084258

11) Ma, Xiaolong, Xinlei Sun*, Christine Thomas, Localized ultra-low velocity zones at the eastern boundary of Pacific LLSVP, Earth Plant. Sci. Lett., 2019, 507, 40-49, doi:10.1016/j.epsl.2018.11.037

12) Wang, Shuang, Xinlei Sun*, Topography effect on ambient noise tomography using a dense seismic array, Earthquake Science, 2018, 31:291-300, doi:10.29382/eqs-2018-0291-9  

13) He, Lipeng,  Xinlei Sun*, Hongfeng Yang, Jialing Qin, Yusong Shen, Xiuwei Ye, Upper crustal structure and earthquake mechanism in the Xinfengjiang water reservoir, Guangdong, China, J. Geophys. Res, 2018, doi:10.1029/2017JB015404

14) Wang, S., X. Sun*, Qin, J.L et al., Fine Fault Structure of Xinfengjiang Water Reservoir Area from high Frequency  ambient noise tomography (in Chinese), Chinese J. Geophys., 2018, 61(2), 593-603, doi :10.6038/cjg2018L0434.

(王爽, 孙新蕾*, 秦加岭, 何立朋, 邓阳凡, 利用密集地震台网高频环境噪声研究广东新丰江库区浅层地下结构 , 地球物理学报,2018, 61(2):593-603.  DOI:10.6038/cjg2018L0434)

15) Sun, Xinlei, Weidong Sun*, Yanbin, Hu, Wei Ding, Trevor Ireland et. al., Major Miocene geological events in southern Tibet and East Asia induced by the subduction of the Ninetyeast ridge, Acta Geochemica, 2018, doi:10.1007/s11631-018-0262-y.

16) Ramirez, C.,  A. Nyblade, E.L. Emry, J. Julià, X. Sun, S. Anandakrishnan, D.A. Wiens, R.C. Aster, A.D. Huerta, P. Winberry, T. Wilson; Crustal structure of the Transantarctic Mountains, Ellsworth Mountains and Marie Byrd Land, Antarctica: constraints on shear wave velocities, Poisson's ratios and Moho depths, Geophys. J. Int., 211(3), 2017, 1328–1340.

17) Ma X,  X. Sun*,    Ultra-low velocity zone heterogeneities at the core–mantle boundary from diffracted PKKPab waves, Earth, Planets Space, 2017, 69:115.

18) Ma X,  X. Sun*, Wiens D A, et al. Strong seismic scatterers near the core–mantle boundary north of the Pacific Anomaly. Physics Earth Planet. Inter.,2016, 253: 21-30.

19) Chaupet,J, R.C. Aster, A. Huerta, , X. Sun, A. Lloyd, D. Wiens, A. Nyblade, S. Anandakrishnan, P. Winberry ,T. Wilson, Crustal Thickness Across West Antarctica, 2013,  J. Geophys. Res.,   DOI: 10.1002/2013JB010642

20) Sun X.*, Song, X.D., S.H. Zheng, Y. Yang and M. Rotzwoller, Three dimensional shear velocity structure of the crust and upper mantle beneath China from ambient noise surface wave tomography, Earthquake Science, 23, 449-463, doi:10.1007/s11589-010-0744-3, 2010.

21) Zheng, S. H., X.  Sun, X.D. Song, Y. Yang and M. Ritzwoller, Surface wave tomography of China from ambient seismic noise correlation, Geochm. Geophys. Geosys.,  Vol. 9, Q05020, doi:10.1029/2008GC001981, 2008.

22) Sun X.*, X. D. Song, The inner inner core of the Earth: Texturing of iron crystals from three-dimensional seismic anisotropy, Earth Planet. Sci. Lett., doi:10.1016/j.epsl.2008.01.049, 2008.

23) Sun X.*, X. D. Song, Tomographic inversion for three-dimensional anisotropy of Earth's inner core, Phys. Earth Planet. Inter ,doi:10:1016/j.pepi.2008.02.011,  2008.

24) Zheng, S. H., X. Sun, and X. Song,  Fine structure of P-wave velocity variations underneath the Central Pacific from PKP waves recorded at the China Seismic Network (CSN)., Chinese J.  Geophys., 50~(1), 183-191., 2007

25) Sun X.*, X. D. Song, S. H. Zheng, and D.V. Helmberger, Evidence for a chemical-thermal structure at base of mantle from sharp lateral P-wave variations beneath Central America, Proc. Natl. Acad. Sci. U. S. A., 104 (1): 26-30, 2007.

26) Sun X.*, G. Poupinet, X. Song, Examination of systematic mislocation of South Sandwich Islands earthquakes using station pairs: Implications for inner core rotation, J. Geophys. Res.,111, B11305, doi:10.1029/2005JB004175, 2006.

27) Zhang, J., X. D. Song, Y. Li, P.G. Richards, X. Sun, and F. Waldhauser, Inner core differential motion confirmed by earthquake waveform doublets, Science, 309, 1357-1360, doi:10.1126/science.1113193, 2005.

28) Sun, X.*, and X. D. Song, PKP travel times at near antipodal distances: Implications for inner core anisotropy and lowermost mantle structure, Earth Plant. Sci. Lett.,199, 429-445, 2002.


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