个人简介
2006.09-2010.07北京大学物理学院本科生,获理学学士学位
2010.09-2015.07北京大学等离子体专业博士研究生,获理学博士学位
2013.10-2015.03日本大阪大学,激光工程研究所,访问学者
2015.07-2019.01美国普林斯顿大学,等离子体物理国家实验室,博士后研究员
2019.01-2019.03中国科学技术大学,工程与应用物理系,特任研究员
2019.04-现今 中国科学技术大学,工程与应用物理系,特任教授
研究领域
高能量密度物理,主要致力于国家重大科技专项——激光惯性约束聚变相关的理论解析和数值模拟,及基于等离子体的高功率激光装置的光学器件等。具体研究内容包括:聚变点火中的韦伯不稳定性,高功率激光驱动离子加速,等离子体中短脉冲激光拉曼放大技术,磁化等离子体中涡旋矢量光场的制备和应用,新型远紫外至X射线辐射源的制备等。
近期论文
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1. Kenan Qu, Qing Jia, Matthew R. Edwards, Nathaniel J. Fisch, Theory of electromagnetic wave frequency upconversion in dynamic media, Physics Review E, 98, 023202 (2018).
2. Matthew R. Edwards, Kenan Qu, Qing Jia, J. M. Mikhailova, N. J. Fisch, Cascaded chirped photon acceleration for efficient frequency conversion. Physics of Plasmas, 25, 053102 (2018).
3. A. A. Balakin, G. M. Fraiman, Q. Jia, N. J. Fisch, The influence of nonlinear detuning at plasma wavebreaking threshold on the backward Raman compression of nonrelativistic laser pulses. Physics of Plasmas, 25, 062118 (2018).
4. Kenan Qu, Qing Jia, Nathaniel J. Fisch, Plasma q-plate for generation and manipulation of intense optical vortices. Physics Review E, 96, 053207 (2017).
5. Qing Jia, Yuan Shi, Hong Qin, Nathaniel J. Fisch, Kinetic simulations of laser parametric amplification in magnetized plasmas, Physics of Plasmas, 24, 093103 (2017).
6. Qing Jia, Ido Barth, Matthew R. Edwards, Julia M. Mikhailova, Nathaniel J. Fisch, Distinguishing Raman from strongly coupled Brillouin amplification for short pulses. Physics of Plasmas, 23, 053118 (2016).
7. Matthew R. Edwards, Qing Jia, Julia M. Mikhailova, Nathaniel J. FIsch, Short pulse amplification by strongly coupled stimulated Brillouin scattering. Physics of Plasmas, 23, 083122 (2016).
8.Kunioki Mima, Qing Jia, Hongbo Cai, Toshihiro Taguchi, H. Nagatomo, JR. Sanz, J. Honrubia, Intense laser driven collisionless shock and ion acceleration in magnetized plasmas, Journal of Physics Conference Series, 717, 012070 (2016).
9. Qing Jia, Knnioki Mima, Hong-bo Cai, Toshihiro Taguchi, Hideo Nagatomo, X. T. He, Sellf-generated magnetic dipoles in weakly magnetized beam-plasma system. Physics Review E, 91, 023107(2015).