姓名:李博(教授,博导)

职称: 教授

邮箱: plasma@buaa.edu.cn

姓名:李博

职称:教授

Email:plasma@buaa.edu.cn

办公地点:沙河校区国实C807

研究方向:等离子体物理的理论和数值模拟研究

 

个人简介:李博,北京航空航天大学澳门新葡亰1495app教授,博士生导师。2007年毕业于美国德克萨斯大学奥斯汀分校获物理学博士学位。2007-2012年先后在美国达特茅斯澳门新葡亰和美国麻省理工澳门新葡亰从事博士后研究。2012-2018年任北京大学澳门新葡亰1495app研究员。研究领域是等离子体物理理论和数值模拟研究,特别是对磁约束等离子体湍流的基础物理研究。

 

教育背景:

1998/09-2002/07,西安电子科技大学,应用物理系,学士

2002/09-2007/08,美国德克萨斯大学奥斯汀分校,物理系,博士

 

工作经历:

2007/09-2010/06,美国达特茅斯澳门新葡亰,物理与天文系,博士后

2010/07-2012/06,美国麻省理工澳门新葡亰,等离子体科学与聚变中心,博士后

2012/07-2018/06,北京大学,澳门新葡亰1495app,研究员

2018/07-至今,北京航空航天大学,澳门新葡亰1495app,教授

 

承担项目:

1.国家自然科学基金面上项目,《偶极磁场约束下的等离子体湍流输运模拟研究》

2.科技部国家磁约束聚变能发展研究专项,《托卡马克边缘等离子体湍流的理论与模拟研究》

 

代表性学术成果:

(1)Weike Ou, Lipeng Wang,Bo Li* and B. N. Rogers, Turbulent pinch in whole-plasma simulations of a dipole-confined plasma, PHYSICAL REVIEW E 101, 021201(R) (2020)

(2)Y. Lang, Z. Guo, X. G. Wang, and Bo Li*, Avalanches triggered by Kelvin-Helmholtz instability in a cylindrical plasma device, PHYSICAL REVIEW E 100, 033212 (2019)

(3)Libo Wang, Ben Zhu, Xue-qiao Xu, and Bo Li, A Landau-fluid closure for arbitrary frequency response, AIP Advances 9, 015217 (2019)

(4)C. K. Sun,X. Q. Xu*, C. H. Ma, and B. Li*, Linear analyses of peeling-ballooning modes in high beta pedestal plasmas, Physics of Plasmas, 25, 082106 (2018)

(5)B. Li*, X. Y. Wang, Z. Xie, P. Li and K. Gentle, Phase dynamics of edge transport bifurcation induced by external biasing, Plasma Physics and Controlled Fusion, 60, 024001 (2018) (Invited Paper).

(6)Hua-sheng Xie, Z. Lu, and B. Li*, Kinetic Ballooning Mode Under Steep Gradient: High Order Eigenstates and Mode Structure Parity Transition, Physics of Plasmas,25,072106(2018).

(7)Hua-sheng Xie, Y. Zhang, Z. Huang, W. Ou and B. Li*, Local Gyrokinetic Study of Electrostatic Microinstabilities in Dipole Plasmas, Physics of Plasmas, 24, 122115 (2017)

(8)Hua-sheng Xie*, Y. Li, Z. Lu, W. Ou and B. Li*, Comparisons and Applications of Four Independent Numerical Approaches for Linear Gyrokinetic Drift Modes, Physics of Plasmas, 24, 072106 (2017).

(9)B. Li*, X. Y. Wang, C. K. Sun, C. Meng, A. Zhou, and D. Liu, Edge transport bifurcation in plasma resistive interchange turbulence, Physics of Plasmas, 24, 055905 (2017) (Invited Paper).

(10)B. Li*,X. Y. Wang, C. K. Sun, A. Zhou, D. Liu, C. H. Ma, and X. G. Wang, Bifurcation and hysteresis of plasma edge transport in a flux-driven system, Physical Review E 94, 043201 (2016).

(11)X. Liao, Z. Lin, I. Holod, Y. Xiao,B. Li*,and P. B. Snyder, Microturbulence in DIII-D tokamak pedestal. III. Effects of collisions, Physics of Plasmas 23, 122507 (2016).

(12)X. Liao, Z. Lin, I. Holod,B. Li*,and G. Y. Sun, Microturbulence in DIII-D tokamak pedestal. IV. Electrostatic turbulent transport, Physics of Plasmas 23, 122305 (2016).

(13)Hua-sheng Xie* and Bo Li*, Global theory to understand toroidal drift waves in steep gradient, Physics of Plasmas 23, 082513 (2016).

(14)B. Li*, X. Liao, C. Sun, W. Ou, D, Liu, G. Gui, and X. G. Wang, Magnetic curvature effects on plasma interchange turbulence, Physics of Plasmas 23, 062304 (2016).

(15)B. Li, C. K. Sun, X. Y. Wang, A. Zhou, X. G. Wang, and D. R. Ernst, Fluctuation-induced shear flow and energy transfer in plasma interchange turbulence, Physics of Plasmas, 22, 112304 (2015).

(16)B. Li and D. R. Ernst, Gyrokinetic Fokker-Planck Collision Operator, Physical Review Letters, 106, 195002 (2011).

(17)B. Li, B. N. Rogers, P. Ricci, K. W. Gentle and A. Bhattacharjee, Turbulence and bias-induced flows in simple magnetized toroidal plasmas, Physical Review E, 83, 056406 (2011).

(18)B. Chandran,B. Li, B. N. Rogers, E. Quataert, and K. Germaschewski, Perpendicular Ion Heating by Low-frequency Alfven-wave Turbulence in the Solar Wind, Astrophysical Journal, 720, 503-515 (2010).

(19)B. Li,B. N. Rogers, P. Ricci, and K. W. Gentle, Plasma transport and turbulence in the Helimak: Simulation and experiment, Physics of Plasmas, 16, 082510 (2009).

(20)L. J. Zheng,B. Li, R. D. Hazeltine, Bifurcated states of the error-field-induced magnetic islands, Physics Letters A, 372, 2056-2060 (2008).

(21)B. Li, R. D. Hazeltine, and K. W. Gentle, Plasma fluctuations as Markovian noise, Physical Review E, 76, 066402 (2007).

(22)B. Li and R. D. Hazeltine, Applications of noise theory to plasma fluctuations, Physical Review E, 73, 065402(R) (2006).

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