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中国科学院地质与地球物理研究所导师教师师资介绍简介-钟俊

本站小编 Free考研考试/2020-05-30

姓名: 钟俊 性别:

职称: 副研究员 学历: 博士

电话: 传真:

Email: j.zhong(at)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:
【English】 地球与行星物理院重点实验室 行星物理学学科组

简历:
  钟俊,1982年生于安徽省庐江县。从事行星磁层特别是水星磁层,及其与地球比较研究,尝试探索地球空间环境的长期演化。发现了常态下太阳风与水星的直接相互作用区;论证了行星内核在弱地磁时期对空间环境的保护作用;首次报道水星空间的磁重联区及其快速演化过程,指出强驱动快速脉冲式重联特征;提出了水星磁通量传输事件形成机理;发现了水星磁层超大磁通量绳的存在证据并提出了相应的形成机理。地球物理学会行星物理专业委员会委员。日本—欧空局BepiColombo卫星项目等离子体探测仪器(MPPE)国际合作科学家(Co-I)。
2015.12-现在:中国科学院地质与地球物理研究所,副研究员

2013.07-2015.12:中国科学院地质与地球物理研究所,助理研究员

2009.09-2013.07:北京大学,空间物理专业,理学博士

2006.09-2009.07:北京大学,空间物理专业,理学硕士

2001.09-2005.07:江南大学,电子信息专业,工学学士



研究方向:
太阳风与水星相互作用

磁场重联



学科类别:
空间物理学

职务:


社会任职:


获奖及荣誉:


承担科研项目情况:
《水星磁尾磁场重联的卫星观测研究》,国家自然科学基金面上项目,2019-2022

《行星际磁场对水星磁层顶位置及位形的控制》,国家自然科学基金面上项目,2017-2020

《水星磁层顶通量传输事件产生率及空间分布特征研究》,国家自然科学基金青年科学基金项目,2015-2017

《磁层顶多X线磁场重联等离子体特征研究》,中国科学院近地空间环境重点实验室课题,2014-2017



代表论著:
My ResearcherID:O-2421-2013,Google Scholar
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Zhong, J., L.C. Lee, X.G. Wang, Z.Y. Pu, J.S. He, Y. Wei and W.X. Wan, (2020), Multiple X-line Reconnection Observed in Mercury’s Magnetotail Driven by an Interplanetary Coronal Mass Ejection. ApJL. 893: L11.
Zhong, J., J.H. Shue, Y. Wei, J.A. Slavin, H. Zhang, Z.J. Rong, L.H. Chai and W.X. Wan, (2020), Effects of Orbital Eccentricity and IMF Cone Angle on the Dimensions of Mercury’s Magnetosphere. ApJ. 892: 2.
Zhong, J., Q.G. Zong, Y. Wei, J.A. Slavin, X. Cao, Z.Y. Pu, X.G. Wang, S.Y. Fu, J.M. Raines and W.X. Wan, (2019), MESSENGER Observations of Giant Plasmoids in Mercury's Magnetotail. ApJL. 886: L32.
Zhong, J., Y. Wei, Z.Y. Pu, X.G. Wang, W.X. Wan, J.A. Slavin, X. Cao, J.M. Raines, H. Zhang, C.J. Xiao, A.M. Du, R.S. Wang, R.M. Dewey, L.H. Chai, Z.J. Rong and Y. Li, (2018), MESSENGER Observations of Rapid and Impulsive Magnetic Reconnection in Mercury's Magnetotail. ApJL. 860: L20.
Zhong, J., W.X. Wan, Y. Wei, J.A. Slavin, J.M. Raines, Z.J. Rong, L.H. Chai and X.H. Han, (2015), Compressibility of Mercury's dayside magnetosphere. GRL. 42: 10,135-10,139.
Zhong, J., W.X. Wan, J.A. Slavin, Y. Wei, R.L. Lin, L.H. Chai, J.M. Raines, Z.J. Rong and X.H. Han, (2015), Mercury's three-dimensional asymmetric magnetopause. J. Geophy. Res. Space Physics. 120: 7658-7671.
Zhong, J., W.X. Wan, Y. Wei, S.Y. Fu, W.X. Jiao, Z.J. Rong, L.H. Chai and X.H. Han, (2014), Increasing exposure of geosynchronous orbit in solar wind due to decay of Earth's dipole field. J. Geophy. Res. Space Physics. 119: 9816-9822.
Zhong, J., Z.Y. Pu, M.W. Dunlop, Y.V. Bogdanova, X.G. Wang, C.J. Xiao, R.L. Guo, H. Hasegawa, J. Raeder, X.Z. Zhou, V. Angelopoulos, Q.G. Zong, S.Y. Fu, L. Xie, M.G.G.T. Taylor, C. Shen, J. Berchem, Q.H. Zhang, M. Volwerk and J.P. Eastwood, (2013), Three-dimensional magnetic flux rope structure formed by multiple sequential X-line reconnection at the magnetopause. J. Geophy. Res. Space Physics. 118: 1904-1911.
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Zhong Jun, Xie Lun., Pu Zuyin, Jiao Weixin, Motoharu Nowada, Wang Xinyue, Zhang Xianguo, Wang Shijin, (2013), Features of solar wind ions near the Moon observed by spacecraft Chang'E-1. 航天器环境工程. 30: 225-229.
Zhong Jun, Jiao Weixin, Zong Qiugang , Zhang Jichun, Michelle F. Thomsen, Tian Tian, (2009), Distribution of spacecraft surface charging potential in plasma sheet at geosynchronous orbit during geomagnetic storms. 航天器环境工程. 26: 312-316.
Zhang, T.-X., H. Zhang, H.-R. Lai, J. Zhong, L.-B. Liu, Y. Wei, J.-B. Cao, J. Cui, C.-B. Zhu, S.-Y. Fu and W.-X. Wan, (2020), Asymmetric Lunar Magnetic Perturbations Produced by Reflected Solar Wind Particles. ApJL. 893: L36.
Zhang, C., Z.J. Rong, J.W. Gao, J. Zhong, L.H. Chai, Y. Wei, C. Shen and W.X. Wan, (2020), The Flapping Motion of Mercury's Magnetotail Current Sheet: MESSENGER Observations. GRL. 47: e2019GL086011.
Wei, Y., J. Zhong, H. Hui, Q. Shi, J. Cui, H. He, H. Zhang, Z. Yao, X. Yue, Z. Rong, F. He, L. Chai and W. Wan, (2020), Implantation of Earth's Atmospheric Ions Into the Nearside and Farside Lunar Soil: Implications to Geodynamo Evolution. GRL. 47: e2019GL086208.
Zhang, H., S. Fu, Z. Pu, J. Lu, J. Zhong, C. Zhu, W. Wan and L. Liu, (2019), Statistics on the Magnetosheath Properties Related to Magnetopause Magnetic Reconnection. ApJ. 880: 122.
Slavin, J.A., H.R. Middleton, J.M. Raines, X. Jia, J. Zhong, W.-J. Sun, S. Livi, S.M. Imber, G.-K. Poh, M. Akhavan-Tafti, J.M. Jasinski, G.A. DiBraccio, C. Dong, R.M. Dewey and M.L. Mays, (2019), MESSENGER Observations of Disappearing Dayside Magnetosphere Events at Mercury. J. Geophy. Res. Space Physics. 124: 6613-6635.
Fan, K., M. Fraenz, Y. Wei, Q. Han, E. Dubinin, J. Cui, L. Chai, Z. Rong, J. Zhong, W. Wan, J. Mcfadden and J.E.P. Connerney, (2019), Reduced Atmospheric Ion Escape Above Martian Crustal Magnetic Fields. GRL. 46: 11764-11772.
Chang, Q., X. Xu, Q. Xu, J. Zhong, J. Xu, J. Wang and T. Zhang, (2019), Multiple-point Modeling the Parker Spiral Configuration of the Solar Wind Magnetic Field at the Solar Maximum of Solar Cycle 24. ApJ. 884: 102.
Chai, L., W. Wan, Y. Wei, T. Zhang, W. Exner, M. Fraenz, E. Dubinin, M. Feyerabend, U. Motschmann, Y. Ma, J.S. Halekas, Y. Li, Z. Rong and J. Zhong, (2019), The Induced Global Looping Magnetic Field on Mars. ApJL. 871: L27.
Rong, Z.J., Y. Ding, J.A. Slavin, J. Zhong, G. Poh, W.J. Sun, Y. Wei, L.H. Chai, W.X. Wan and C. Shen, (2018), The Magnetic Field Structure of Mercury's Magnetotail. J. Geophy. Res. Space Physics. 123: 548-566.
魏勇, 戎昭金, 钟俊, 柴立晖, 乐新安, 刘立波, 于晟, 朱日祥, 万卫星, (2017), 比较行星空间物理. 地球科学进展. 32: 15-20.
Wei, Y., M. Fraenz, E. Dubinin, W. Wan, T. Zhang, Z. Rong, L. Chai, J. Zhong, R. Zhu, Y. Futaana and S. Barabash, (2017), Ablation of Venusian oxygen ions by unshocked solar wind. Science Bulletin. 62: 1669-1672.
He, M., J. Vogt, D. Heyner and J. Zhong, (2017), Solar wind controls on Mercury's magnetospheric cusp. J. Geophy. Res. Space Physics. 122: 6150-6164.
焦维新,钟俊, (2016), 近地小行星探测目标选择. 地球物理学报. 59: 3955-3959.
Chai, L., Y. Wei, W. Wan, T. Zhang, Z. Rong, M. Fraenz, E. Dubinin, H. Zhang, J. Zhong, X. Han and S. Barabash, (2016), An induced global magnetic field looping around the magnetotail of Venus. J. Geophy. Res. Space Physics. 121: 688-698.
Rong, Z.J., S. Barabash, G. Stenberg, Y. Futaana, T.L. Zhang, W.X. Wan, Y. Wei, X.D. Wang, L.H. Chai and J. Zhong, (2015), The flapping motion of the Venusian magnetotail: Venus Express observations. J. Geophy. Res. Space Physics. 120: 5593-5602.
Chai, L., W. Wan, M. Fraenz, T. Zhang, E. Dubinin, Y. Wei, Y. Li, Z. Rong, J. Zhong, X. Han and Y. Futaana, (2015), Solar zenith angle-dependent asymmetries in Venusian bow shock location revealed by Venus Express. J. Geophy. Res. Space Physics. 120: 2015JA021221.
Rong, Z.J., S. Barabash, Y. Futaana, G. Stenberg, T.L. Zhang, W.X. Wan, Y. Wei, X.D. Wang, L.H. Chai and J. Zhong, (2014), Morphology of magnetic field in near-Venus magnetotail: Venus express observations. J. Geophy. Res. Space Physics: 2014JA020461.
Han, X., M. Fraenz, E. Dubinin, Y. Wei, D.J. Andrews, W. Wan, M. He, Z.J. Rong, L. Chai, J. Zhong, K. Li and S. Barabash, (2014), Discrepancy between ionopause and photoelectron boundary determined from Mars Express measurements. GRL. 41: 2014GL062287.
Chai, L., M. Fraenz, W. Wan, Z. Rong, T. Zhang, Y. Wei, E. Dubinin, J. Zhong, X. Han and S. Barabash, (2014), IMF control of the location of Venusian bow shock: The effect of the magnitude of IMF component tangential to the bow shock surface. J. Geophy. Res. Space Physics. 119: 2014JA019878.
Pu, Z.Y., J. Raeder, J. Zhong, Y.V. Bogdanova, M. Dunlop, C.J. Xiao, X.G. Wang and A. Fazakerley, (2013), Magnetic topologies of an in vivo FTE observed by Double Star/TC-1 at Earth's magnetopause. GRL. 40: 3502-3506.
Guo, R., Z. Pu, C. Xiao, X. Wang, S. Fu, L. Xie, Q. Zong, J. He, Z. Yao, J. Zhong and J. Li, (2013), Separator reconnection with antiparallel/component features observed in magnetotail plasmas. J. Geophy. Res. Space Physics. 118: 6116-6126.
Yao, Z.H., Z.Y. Pu, S.Y. Fu, V. Angelopoulos, M. Kubyshkina, X. Xing, L. Lyons, Y. Nishimura, L. Xie, X.G. Wang, C.J. Xiao, X. Cao, J. Liu, H. Zhang, M. Nowada, Q.G. Zong, R.L. Guo, J. Zhong and J.X. Li, (2012), Mechanism of substorm current wedge formation: THEMIS observations. GRL. 39: L13102.


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