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朱平
单位:物理学院近代物理系、工程与应用物理系
地址:安徽省合肥市金寨路96号
邮编:230026
电话:+86-0551-63600321
个人主页: http://staff.ustc.edu.cn/~pzhu
实验室介绍: http://plasma.ustc.edu.cn
 
个人简历 Personal resume
1992年复旦大学物理学专业理学学士,1996年中国科学院物理研究所等离子体物理专业理学硕士,2001年美国德克萨斯大学奥斯汀分校物理学博士。先后任职美国衣阿华大学, 新罕布什尔大学, 威斯康星大学麦迪逊分校等高教科研机构,长期从事磁约束聚变和空间磁层等离子体物理的理论计算工作。2013年入选中国科学院百人计划,担任中国科学技术大学物理学院近代物理系、工程与应用物理系教授与博士生导师至今。已主持美国国家科学基金(NSF),中国科学技术部ITER国内专项计划,中国国家自然科学基金等多项课题,在 Phys. Rev. Letts., Phys. Plasmas 等国际专业期刊发表论文近50篇,被引用约900次,数次在国际学术会议上作邀请报告和任分会主席。 学术兼职主要包括担任NSF、DOE(美国能源部)、国家科技奖、教育部长江学者、国家自然科学基金,以及国际主流学术期刊等的评审专家,中国磁约束聚变理论与模拟研讨会组委会委员,美国物理学会等离子体物理分会Marshall N. Rosenbluth优秀博士论文奖评委等。
 
研究方向 Research direction
1、理论与计算等离子体物理
2、聚变等离子体物理
3、空间等离子体物理
 
招生信息 Enrollment information
欢迎有数学、力学、物理、天文、空间、计算机、软件、工程等专业背景和兴趣的本科生、研究生同学报考,加入课题组的物理研究、科学计算、以及相关软件开发。课题组计算资源主要包括个人台式机、笔记本电脑、多核工作站、CPU-GPU集成计算及存储系统,以及科大超算中心、天津超算中心、美国国家能源研究科学计算中心、美国国家科学基金XSEDE超算中心等地的计算帐户和机时若干。课题组与科大等离子体专业各实验课题组、地空学院空间物理专业、中科院等离子体物理研究所、核工业部西南物理研究院,以及北美、欧盟、日本、韩国等相关高校和实验室均有长期合作,为每位课题组成员的工作、成长提供自由宽广的发展平台和空间。
 
联系方式: pzhu@ustc.edu.cn
 
论文专著 The monograph Researcher ID
1) P. Zhu, A. Bhattacharjee, A. Sangari, Z.-C. Wang, and P. Bonofiglo, Three-dimensional geometry of magnetic reconnection induced by ballooning instability in a generalized Harris sheet - Phys. Plasmas - 2017 - 24, 024503
2) P. Zhu, C.R. Sovinec, and C.C. Hegna, The formation of blobs from a pure interchange process - Phys. Plasmas - 2015 - 22, 022311
3) P. Zhu and J. Raeder, Ballooning instability-induced plasmoid formation in near-Earth plasma sheet - J. Geophys. Res. Space Physics - 2014 - 119, 131-141
4) P. Zhu and J. Raeder, Plasmoid formation in current sheet with finite normal magnetic component - Phys. Rev. Lett. - 2013 - 110, 235005
5) P. Zhu, J. Raeder, C. C. Hegna, and C. R. Sovinec, Nature of axial tail instability and bubble-blob formation in near-Earth plasma sheet - J. Geophys. Res. Space Physics - 2013 - 118, 653-663
6) P. Zhu, C. C. Hegna, and C. R. Sovinec, Stabilizing effects of edge current density on pedestal instabilities - Phys. Plasmas - 2012 - 19, 032503
7) P. Zhu, C.C. Hegna, C.R. Sovinec, A. Bhattacharjee, and K. Germaschewski, Intermediate nonlinear regimes of line-tied g mode and ballooning instability - Nucl. Fusion - 2009 - 49, 095009
8) P. Zhu, C. C. Hegna, and C. R. Sovinec, Exponential growth of nonlinear ballooning instability - Phys. Rev. Lett. - 2009 - 102, 235003
9) P. Zhu, J. Raeder, K. Germaschewski, and C. C. Hegna, Initiation of ballooning instability in the near-Earth plasma sheet prior to the 23 March 2007 THEMIS substorm expansion onset - Ann. Geophys. - 2009 - 27, 1129-1138
10) P. Zhu and C. C. Hegna, Ballooning filament growth in the intermediate nonlinear regime - Phys. Plasmas - 2008 - 15, 092306
11) P. Zhu, D. D. Schnack, F. Ebrahimi, E. G. Zweibel, M. Suzuki, C. C. Hegna, and C. R. Sovinec, Absence of complete finite-Larmor-radius stabilization in extended MHD - Phys. Rev. Lett. - 2008 - 101, 085005
12) P. Zhu, C.R. Sovinec, C.C. Hegna, A. Bhattacharjee, and K. Germaschewski, Nonlinear ballooning instability in the near-Earth magnetotail: Growth, structure, and possible role in substorms - J. Geophys. Res. - 2007 - 112, A06222
13) P. Zhu, C.C. Hegna, C.R. Sovinec, A. Bhattacharjee, and K. Germaschewski, Intermediate nonlinear regime of a line-tied g mode - Phys. Plasmas - 2007 - 14, 055903
14) P. Zhu, C.C. Hegna, and C.R. Sovinec, Nonlinear growth of a line-tied g mode near marginal stability - Phys. Plasmas - 2006 - 13, 102307
15) P. Zhu, A. Bhattacharjee, and K. Germaschewski, Intermediate nonlinear evolution of the Parker instability: Formation of convection-induced discontinuities and absence of finite-time singularities - Phys. Rev. Lett. - 2006 - 96, 065001
16) P. Zhu, A. Bhattacharjee, and Z.W. Ma, Finite-ky ballooning instability in the near-Earth magnetotail - J. Geophys. Res. - 2004 - 109, A11211
17) P. Zhu, A. Bhattacharjee, and Z.W. Ma, Hall MHD ballooning instability in the magnetotail - Phys. Plasmas - 2003 - 10, 249
18) P. Zhu, G. Bateman, A.H. Kritz, and W. Horton, Predictive transport simulations of internal transport barriers using the Multi-Mode model - Phys. Plasmas - 2000 - 7, 2898
19) P. Zhu, W. Horton, and H. Sugama, The radial electric field in a tokamak with reversed magnetic shear - Phys. Plasmas - 1999 - 6, 2503
20) P. Zhu and S.T. Tsai, Effect of sheared flow on drift and Kelvin-Helmholtz instabilities in a tandem mirror - Plasma Phys. Controlled Fusion - 1996 - 38, 405
21) S.-K. Cheng, P. Zhu, D. Banerjee, X.-T. Yan, and CFETR Physics Team, Dominant two-fluid MHD instabilities in CFETR upgrade phase-I scenario in presence of perfect conducting wall - Plasma Phys. Control. Fusion - 2019 - 61, 045009
22) Y.-W. Hou, M.-Y. Yu, P. Zhu, Z.-W. Ma, and M.-X. Chen, A particle-conserved weighted-average oscillator model for trapped particles in long-time nonlinear Landau damping - Phys. Plasmas - 2018 - 25, 114501
23) M. Laishram and P. Zhu, Structural transition of vortices to nonlinear regimes in a dusty plasma - Phys. Plasmas - 2018 - 25, 103701
24) S.-C. Yang, P. Zhu, J.-L. Xie, and W.-D. Liu, Two-fluid MHD regime of resistive drift-wave instability - Phys. Plasmas - 2018 - 25, 092113
25) W.-X. Ding, H.-Q. Liu, J.-P. Qian, S.-B. Zhang, D. L. Brower, Z.-Y. Zou, W.-M. Li, Y. Yang, L. Zeng, J.-L. Xie, P. Zhu, C.-X. Yu, T. Lan, S.-X. Wang, H. Lian, Y.-X. Jie, and et al, Spontaneous current relaxation in NBI heated plasmas on EAST - Plasma Sci. Technol. - 2018 - 20, 094001
26) Y.-W. Hou, P. Zhu, C. C. Kim, Z.-Q. Hu, Z.-H. Zou, Z.-X. Wang, and the NIMROD Team, NIMROD calculations of energetic particle driven toroidal Alfven eigenmodes - Phys. Plasmas - 2018 - 25, 012501
27) B. Luo, P. Zhu, H. Li, W.-D. Liu, and KTX Team, Resistive MHD modelling of quasi-single helicity state in the KTX regimes - Nucl. Fusion - 2018 - 58, 016049
28) Z.-Y. Li, V.S. Chan, Y.-R. Zhu, X. Jian, J.-L. Chen, S.-K. Cheng, P. Zhu, X.-Q. Xu, T.-Y. Xia, G.-Q. Li, L.L. Lao, P.B. Snyder, X.-G. Wang, and the CFETR Physics Team, Ideal MHD stability and characteristics of edge localized modes on CFETR - Nucl. Fusion - 2018 - 58, 016018
29) S.-K. Cheng, P. Zhu, and D. Banerjee, Enhanced toroidal flow stabilization of edge localized modes with increased plasma density - Phys. Plasmas - 2017 - 24, 092510
30) X.-T. Yan, P. Zhu, and Y.-W. Sun, Neoclassical toroidal viscosity torque in tokamak edge pedestal induced by external resonant magnetic perturbation - Phys. Plasmas - 2017 - 24, 082510
31) D. Banerjee, P. Zhu, and R. Maingi, Stabilizing effects of resistivity towards ELM-free H-mode discharge in Lithium-conditioned NSTX - Nucl. Fusion - 2017 - 57, 076005
32) D. Banerjee, P. Zhu, and R. Maingi, Stabilizing effects of resistivity on low-n edge localized modes in NSTX - Phys. Plasmas - 2017 - 24, 054501
33) A. Hussain, Z.-L. Zhao, J.-L. Xie, P. Zhu, W.-D. Liu, A. Ti and EAST Team, Observations of compound sawteeth in ion cyclotron resonant heating plasma using ECE imaging on experimental advanced superconducting tokamak - Phys. Plasmas - 2016 - 23, 042504
34) W.-L. Huang and P. Zhu, Mode locking and island suppression by resonant magnetic perturbations in Rutherford regime - Phys. Plasmas - 2015 - 22, 032502
35) W.-L. Huang and P. Zhu, The locking and unlocking thresholds for tearing modes in a cylindrical tokamak - Phys. Plasmas - 2016 - 23, 032505
36) J. Raeder, P. Zhu, Y. Ge, and G. Siscoe, Auroral signatures of ballooning mode near substorm onset: Open Geospace General Circulation Model simulations - Geophys. Monogr. Ser. - 2012 - 197, 389-395
37) J. Raeder, P. Zhu, Y. Ge, and G. Siscoe, OpenGGCM simulation of a substorm: Axial tail instability and ballooning mode preceding substorm onset - J. Geophys. Res. - 2010 - 115, A00I16
38) B. J. Burke, S. E. Kruger, C. C. Hegna, P. Zhu, P. B. Snyder, C. R. Sovinec, and E. C. Howell, Edge localized linear ideal magnetohydrodynamic instability studies in an extended-magnetohydrodynamic code - Phys. Plasmas - 2010 - 17, 32103
39) K. Avinash, P. Zhu, V. Nosenko, and J. Goree, Nonlinear compressional waves in a two-dimensional Yukawa lattice - Phys. Rev. E - 2003 - 68, 046402
40) W. Horton, B. Hu, J. Q. Dong, and P. Zhu, Turbulent electron thermal transport in tokamaks - New J. Phys. - 2003 - 5, Art. No. 14
41) B. Hu, W. Horton, P. Zhu, and F. Porcelli, Density profile control with current ramping in a transport simulation of Ignitor - Phys. Plasmas - 2003 - 10, 1015
42) W. Horton, F. Porcelli, P. Zhu, A. Aydemir, Y. Kishimoto, and T. Tajima, Ignitor physics assessment and confinement projections - Nucl. Fusion - 2002 - 42, 169
43) G. T. Hoang, C. Bourdelle, X. Garbet, G. Giruzzi, T. Aniel, M. Ottaviani, W. Horton, P. Zhu, and R. V. Budny, Experimental determination of critical threshold in electron transport on Tore Supra - Phys. Rev. Lett. - 2001 - 87, 125001
44) G. M. Staebler, R. E. Waltz, J. E. Kinsey, G. Bateman, A. H. Kritz, T. Onjun, A. Pankin, P. Zhu, and W. Horton, Drift wave based modeling of poloidal spin-up precursor and stepwise expansion of transport barriers - Nucl. Fusion - 2001 - 41, 891
45) W. Horton and P. Zhu, Transport barrier dynamics - Phys. Plasmas - 2000 - 7, 4534
46) W. Horton, P. Zhu, G. T. Hoang, T. Aniel, M. Ottaviani, and X. Garbet, Electron transport in Tore Supra with fast wave electron heating - Phys. Plasmas - 2000 - 7, 1494
47) J. M. Kwon, W. Horton, P. Zhu, P. J. Morrison, H. B. Park, and D. I. Choi, Global drift wave map test particle simulations - Phys. Plasmas - 2000 - 7, 1169
48) M. Sun, P. Zhu, and S. Z. Yang, A model of plasma source ion implantation for inner surface modification - J. Phys. D: Appl. Phys. - 1996 - 29, 274
 
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