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林間
講席教授
歐洲科學(xué)院院士、俄羅斯自然科學(xué)院院士
0755-88015256

個(gè)人簡(jiǎn)介

林間,國(guó)際著名海洋地球物理學(xué)家,歐洲科學(xué)院院士(Member of European Academy of Sciences), 歐洲人文和自然科學(xué)院院士(Member of Academia Europaea), 俄羅斯自然科學(xué)院院士(Member of Russian Academy of Natural Sciences),對(duì)海洋地球科學(xué)與地震學(xué)作出卓越貢獻(xiàn)。引領(lǐng)國(guó)際大洋合作,其原創(chuàng)性、系統(tǒng)性的發(fā)現(xiàn)奠定了學(xué)界對(duì)全球大洋中脊三維結(jié)構(gòu)的認(rèn)識(shí)基礎(chǔ)。領(lǐng)導(dǎo)穿越全球海洋最深處—馬里亞納海溝挑戰(zhàn)者深淵首次高精度地震實(shí)驗(yàn),揭示了“地球第四極”下的內(nèi)部結(jié)構(gòu)。在大地震之間應(yīng)力相互作用與地震觸發(fā)研究領(lǐng)域作出開創(chuàng)性貢獻(xiàn),其一地震學(xué)成果,十年引用率全球第一。共同領(lǐng)導(dǎo)南海國(guó)際大洋鉆探、深拖地磁與大地電磁等實(shí)驗(yàn),成果入選2019年度中國(guó)十大海洋科技進(jìn)展、2020年廣東省自然科學(xué)一等獎(jiǎng)、2021年度海洋科學(xué)技術(shù)獎(jiǎng)特等獎(jiǎng)(第一完成人)等。共同領(lǐng)導(dǎo)首次發(fā)現(xiàn)西南印度洋深海熱液噴口、實(shí)施首次北印度洋中巴聯(lián)合考察等。當(dāng)選美國(guó)地球物理聯(lián)合會(huì)(AGU)會(huì)士、美國(guó)科學(xué)促進(jìn)會(huì)(AAAS)會(huì)士、美國(guó)地質(zhì)學(xué)會(huì)(GSA)會(huì)士、亨利-比奇洛杰出海洋學(xué)家講座教授等。歷任美國(guó)伍茲霍爾海洋研究所高級(jí)研究員、麻省理工學(xué)院/伍茲霍爾海洋研究所教授、中國(guó)科學(xué)院南海海洋所特聘研究員等。任國(guó)際大洋組織InterRidge主席、美國(guó)科學(xué)院海嘯委員會(huì)、國(guó)家基金委雙清論壇主席、基金委重大研究計(jì)劃集成組長(zhǎng)、指導(dǎo)委員會(huì)等。

 

教育背景

1982,中國(guó)科學(xué)技術(shù)大學(xué),地球物理學(xué)士,獲郭沫若獎(jiǎng)學(xué)金與獎(jiǎng)?wù)?/p>

1988,美國(guó)布朗大學(xué),地球物理學(xué)博士;1984,地球物理學(xué)碩士

 

榮譽(yù)獎(jiǎng)項(xiàng)

當(dāng)選歐洲科學(xué)院院士(Member of European Academy of Sciences)

當(dāng)選歐洲人文和自然科學(xué)院院士(Member of Academia Europaea)

當(dāng)選俄羅斯自然科學(xué)院院士(Member of Russian Academy of Natural Sciences)

當(dāng)選美國(guó)地球物理聯(lián)合會(huì)會(huì)士(AGU Fellow)

當(dāng)選美國(guó)科學(xué)促進(jìn)會(huì)會(huì)士(AAAS Fellow)

當(dāng)選美國(guó)地質(zhì)學(xué)會(huì)會(huì)士(GSA Fellow)

亨利-比奇洛杰出海洋學(xué)家講座教授

國(guó)際大洋發(fā)現(xiàn)計(jì)劃杰出講座科學(xué)家

香港中文大學(xué)杰出學(xué)人講座教授

美國(guó)卡爾彼泊基金會(huì)青年科學(xué)家獎(jiǎng)


發(fā)表論著

  1. T. Zheng., J. Lin, H. Schouten, D.K. Smith, E. Klein, R. Parnell-Turner, Gravity Anomalies and Implications for Shallow Mantle Processes of the Western Cocos-Nazca Spreading Center, Geophysical Research Letters, 50, 2023.

  2. Wang, Z., and J. Lin, Role of fluids and seamount subduction in interplate coupling and the mechanism of the 2021 Mw 7.1 Fukushima-Oki earthquake, Japan., Earth and Planetary Science Letters, 584, 117439, 2022.

  3. Zhang, F., J. Lin, Z. Zhou, H. Yang, and J.P. Morgan, Mechanism of progressive broad deformation from oceanic transform valley to off-transform faulting and rifting, The Innovation, 3, 100193, 2022.

  4. Tao C. et al., Deep high-temperature hydrothermal circulation in a detachment faulting system on the ultra-slow spreading ridge, Nature Comm., 11, 1300, 2020.

  5. Ding, M., J. Lin, C. Gu, Q. Huang, and M.T. Zuber, Variations in Martian lithospheric strength based on gravity/topography analysis, J. Geophys. Res. - Planets, 124, 3095-3118, 2019.

  6. Lin, J., Y. Xu, Z. Sun, and Z. Zhou, Mantle upwelling beneath the South China Sea and links to surrounding subduction  systems, Nat. Sci. Rev., 6, 877-881, 2019.

  7. Park, S.H., et al., An isotopically distinct Zealandia–Antarctic mantle domain in the Southern Ocean, Nature Geosci., 12, 206-214, 2019.

  8. Wan, K., J. Lin, et al., Deep seismic structure across the southernmost Mariana Trench: Implications for arc rifting and plate hydration, J. Geophys. Res., 124, 4710-4727, 2019.

  9. Larsen, H.C., et al., Rapid transition from continental breakup to oceanic crust at South China Sea rifted margin, Nature Geosci., 11, 782-789, 2018.

  10. Ding, M., and J. Lin, Deformation and faulting of subduction overriding plate caused by a subducted seamount, Geophys. Res. Lett., 43, 8936-8944, 2016.

  11. Tao, C., J. Lin, et al., First active hydrothermal vents on an ultraslow spreading center: Southwest Indian Ridge, Geology, 40, 47-50, 2012.

  12. Lin, J., R.S. Stein, et al., Stress transfer among en echelon and opposing thrust and tear faults: Triggering caused by the 2003 Mw=6.9 Zemmouri, Algeria, earthquake, J. Geophys. Res., 116, B03305, 2011.

  13. Gregg, P.M., J. Lin, M. Behn, and L.G.J. Montesi, Spreading rate dependence of gravity anomalies along oceanic transform faults, Nature, 448, 183-187, 2007.

  14. Lin, J., and R.S. Stein, Stress triggering in thrust and subduction earthquakes, and stress interaction between the southern San Andreas and nearby thrust and strike-slip faults, J. Geophys. Res., 109, B02303, 2004.

  15. Dick, H.J.B., J. Lin, and H. Schouten, An ultraslow-spreading class of ocean ridge, Nature, 426, 405-412, 2003.

  16. Freed, A.M., and J. Lin, Delayed triggering of the 1999 Hector Mine earthquake by viscoelastic stress transfer, Nature, 411, 180-183, 2001.

  17. King, G.C.P., R.S. Stein, and J. Lin, Static stress changes and the triggering of earthquakes, Bull. Seismol. Soc. Amer., 84, 935-953, 1994.

  18. Stein, R.S., G.C.P. King, and J. Lin, Stress triggering of the 1994 Northridge earthquake by its predecessors, Science, 265, 1432-1435, 1994.

  19. Stein, R.S., G.C.P. King, and J. Lin, Change in failure stress on the southern San Andreas fault system caused by the 1992 M=7.4 Landers earthquake, Science, 256, 1928-1932, 1992.

  20. Lin, J., G.M. Purdy, H. Schouten, J.-C. Sempere, and C. Zervas, Evidence from gravity data for focused magmatic accretion along the Mid-Atlantic Ridge, Nature, 344, 627-632, 1990.


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