Research Associate Professor Department of Ocean Science and Engineering

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Marine Geophysics, Geodynamics

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1. Zhang F., Lin J.*, Zhou Z., Yang H. and Morgan J.P. Mechanism of progressive broad deformation from oceanic transform valley to off-transform faulting and rifting, The Innovation, 2021, in press.

2. Li H., Lin J.*, Zhou Z.*, Zhang F. and Guo L. Variations in magmatism and the state of tectonic compensation of the Mariana subduction system, Terra Nova, 2021,

3. Zhang J., Zhou Z.*, Ding M., and Lin J. Three-dimensional mantle flow and temperature structure beneath the Shatsky Rise ridge-ridge-ridge triple junction, Journal of Ocean University of China, 2021, 20: 857-865.

4. Li J., Ding W.*, Lin J., Xu Y., Kong F., Li S., Huang X., and Zhou Z. Dynamic processes of the curved subduction system in southeast Asia: A review and future perspective, Earth-Science Reviews, 2021, 217: 103647.

5. Guo L., Lin J.*, Zhang F.*, and Zhou Z. Transfer of stress by the 2004 Mw9.2 Sumatra subduction quake promoted widespread seismicity and large strike-slip events in the Wharton Basin, Terra Nova, 2021, 33: 74-85.

6. Zha C., Lin J.*, Zhou Z., Zhang X., Xu M., and Zhang F. Variations in melt supply along an orthogonal supersegment of the Southwest Indian Ridge (16º-25ºE), Acta Oceanologica Sinica, 2021, 40: 94-104.

7. Zhang F., Lin J.*, and Zhou Z.* Flexural bending curvature and yield zone of subducting plates, International Geology Review, 2020, 62: 859-886.

8. Liu S.#, Lin J.#, Zhou Z.*, and Zhang F. Large along-axis variations in magma supply and tectonism of the Southeast Indian Ridge near the Australian-Antarctic Discordance, Acta Oceanologica Sinica, 2020, 39: 118-129.

9. Zhang J., Li J.*, Ruan A., Ding W., Niu X., Wang W., Tan P., Wu Z., Yu Z., Wei X., Zhao Y., and Zhou Z. Seismic structure of a postspreading seamount emplaced on the fossil spreading center in the southwest subbasin of the South China Sea. Journal of Geophysical Research: Solid Earth, 2020, 125, e2020JB019827.

10. Lin J. *, Xu Y., Sun Z., and Zhou Z. Mantle upwelling beneath the South China Sea and links to surrounding subduction systems, National Science Review, 2019, 6: 877-881.

11. Wan K., Lin J.*, Xia S.*, Sun J., Xu M., Yang H., Zhou Z., Zeng X., Cao J., and Xu H. Deep seismic structure across the southernmost Mariana Trench: Implications for arc rifting and plate hydration, Journal of Geophysical Research: Solid Earth, 2019, 124: 4710-4727.

12. Zhu G., Yang H.*, Lin J.*, Zhou Z., Xu M., Sun J., and Wan K. Along-strike variation in slab geometry at the southern Mariana subduction zone revealed by seismicity through ocean bottom seismic experiments, 2019, Geophysical Journal International, 218: 2122-2135.

13. Zhang F., Lin J.*, and Zhou Z. Intra-trench variations in flexural bending of the subducting Pacific plate along the Tonga-Kermadec Trench, Acta Oceanologica Sinica, 2019, 38: 81-90.

14. Zhou Z., and Lin J.* Elasto-plastic deformation and plate weakening due to normal faulting in the subducting plate along the Mariana Trench, Tectonophysics, 2018, 734-735: 59-68.

15. Zhou Z., Lin J.*, and Zhang F. Modeling of normal faulting in the subducting plates of the Tonga, Japan, Izu-Bonin, and Mariana trenches: Implications for near-trench plate weakening, Acta Oceanologica Sinica, 2018, 11: 53-60.

16. Zhang, F., Lin J.*, Zhou Z.*, Yang H., and Zhan W. Intra- and inter-trench variations in flexural bending of the Manila, Mariana and global trenches: Implications on plate weakening in controlling trench dynamics, Geophysical Journal International, 2018, 212: 1429-1449.

17. Zhou Z., Lin J.*, Behn M. D., and Olive J.-A. Mechanism for normal faulting in the subducting plate at the Mariana trench, Geophysical Research Letters, 2015, 42: 4309-4317.

18. Zhang T., Gao J., Chen M., Yang C., Shen Z., Zhou Z., Wu Z., and Sun Y. Mantle melting factors and amagmatic crustal accretion of the Gakkel Ridge, Arctic Ocean. Acta Oceanologica Sinica, 2015, 34: 42-48.

19. Li C.-F., Xu X., Lin J., et al. (including Zhou Z.), Ages and magnetic structures of the South China Sea constrained by deep tow magnetic surveys and IODP Expedition 349. Geochemistry Geophysics Geosystems, 2014, 15: 4958-4983.

20. 潘谟晗,杨挺,林间,张帆,周志远,李海勇,张旭博,范兴利,程子华,斑点火山的形成机制和岩石圈-软流圈边界(LAB)的性质,地球科学,2021,46: 817-825.

21. 林间,孙珍,李家彪,周志远,张帆,罗怡鸣,南海成因:岩石圈破裂与俯冲带相互作用新认识,科技导报,2020,38: 35-39.

22. 林间,李家彪,徐义刚,孙珍,夏少红,黄小龙,解习农,李春峰,丁巍伟,周志远,张帆,罗怡鸣,南海大洋钻探及海洋地质与地球物理前沿研究新突破,海洋学报,2019,41: 125-140.

23. 徐敏,狄会哲,周志远,李海勇,林间,俯冲带水圈-岩石圈相互作用研究进展与启示,海洋地质与第四纪地质,2019,39: 58-70.

24. 林间,徐敏,周志远,王月,李海勇,俯冲带活动碰撞边界大洋钻探 [M] 汪品先,大洋钻探五十年,同济大学出版社,2018,129-146.

25. 林间,徐敏,周志远,王月,全球俯冲带大洋钻探进展与启示,地球科学进展,2017,12: 1253-1266.

26. 周志远,高金耀,吴招才,沈中延,张涛,孙运凡, 东海莫霍面起伏与地壳减薄特征初步分析, 海洋学研究,2013,31: 16-25.

27. 孙运凡,高金耀,张涛,周志远,杨春国,环南极区域古水深演化特征, 极地研究,2013,25: 25-34.

28. 张涛,高金耀,李家彪,吴招才,吴振利,赵俐红,杨春国,沈中延,周志远,南海西北次海盆的磁条带重追踪及洋中脊分段性,地球物理学报,2012,55: 3163-3172.

29. 杨勇,高金耀,杨春国,沈中延,周志远,孙运凡,基于GIS的海洋地震数据管理系统的设计与实现,海洋通报,2011,30: 414-418.

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