研究简介:
王伟民长期对激光等离子体相互作用、激光聚变、太赫兹辐射、QED等离子体等进行理论和数值模拟研究,发表SCI论文120余篇(包括13篇PRL/X,3篇PNAS,1篇Sci. Adv.),SCI引用2500余次(H因子30),在国际学术会议上作大会/邀请报告20余次。曾获得国际纯粹与应用物理联合会(IUPAP)计算物理青年科学家奖,亚太物理学会(AAPPS)等离子体物理(DDP)青年科学家奖,蔡诗东等离子体物理奖。目前担任《Frontiers in Physics》杂志聚变与等离子体物理部Associate Editor,《强激光与粒子束》编委,中国核学会计算物理分会理事。
学术奖项(Prizes and Awards):
2018年 亚太物理学会等离子体物理青年学者奖(DPP Young Researcher Award of AAPPS in 2018)
2015年 国际纯粹与应用物理联合会计算物理青年科学家奖(IUPAP Young Scientist Prize in Computational Physics in 2015)【物理所王伟民副研究员获2015年度IUPAP青年科学家奖 - 中国科学院物理研究所 (cas.cn)】
2009年 蔡诗东等离子体物理奖 (S. T. Tsai Plasma Physics Award in China in 2009)
代表性工作(*表示通讯作者,Selected publications):
2024年:
1. Tie-Huai Zhang, Wei-Min Wang*, Yu-Tong Li*, and Jie Zhang, Electromagnetically Induced Transparency in the Strongly Relativistic Regime, Phys. Rev. Lett. 132, 065105 (2024). 【王伟民教授课题组与合作者发现:相对论等离子体中的电磁感应透明效应-中国人民大学物理学系 (ruc.edu.cn)】
2. Xing-Long Zhu*, Wei-Yuan Liu, Tong-Pu Yu, Min Chen, Su-Ming Weng, Wei-Min Wang*, and Zheng-Ming Sheng*,Dense Polarized Positrons from Beam-Solid Interaction, Phys. Rev. Lett. 132, 235001 (2024). 【王伟民教授课题组与合作者提出:电子束驱动强场QED效应及其产生的稠密极化正电子束-中国人民大学物理学系 (ruc.edu.cn)】
3. Meng Liu, Wei-Min Wang*, and Yu-Tong Li*, Steady regime of radiation pressure acceleration with foil thickness adjustable within micrometers under a 10-100 PW laser, Phys. Rev. E 109, 015208 (2024).
2023年:
1. Nan Li and Wei-Min Wang*, Far-field model of two-color-laser-driven terahertz radiation including field-element interference and plasma response, Phys. Rev. A 108, 043503 (2023).
2. Jia-Xiang Gao, Meng Liu*, and Wei-Min Wang*, Efficient ion acceleration driven by a Laguerre–Gaussian laser in near-critical-density plasma, Chin. Phys. B 32, 105202 (2023).
3. Xing-Long Zhu*, Wei-Yuan Liu, Min Chen, Su-Ming Weng, Dong Wu, Tong-Pu Yu, Wei-Min Wang, Zheng-Ming Sheng*, Jie Zhang, Magnetic pinching of relativistic particle beams: a new approach to strong-field QED physics, New J. Phys. 25 093016 (2023).
2022年:
1. Huai-Hang Song, Wei-Min Wang*, and Yu-Tong Li*, Dense Polarized Positrons from Laser-Irradiated Foil Targets in the QED Regime, Phys. Rev. Lett. 129, 035001 (2022). 【王伟民教授课题组与合作者发现:超相对论激光与固体靶作用产生极化的高密度正电子束-中国人民大学物理学系 (ruc.edu.cn)】
2. Yong Tan, Hang Zhao, Wei-Min Wang*, Rui Zhang, Yue-Jin Zhao*, Cun-Lin Zhang, Xi-Cheng Zhang, and Liang-Liang Zhang*, Water-Based Coherent Detection of Broadband Terahertz Pulses, Phys. Rev. Lett. 128, 093902 (2022). 【王伟民教授课题组与合作者提出:基于液体的宽带太赫兹脉冲相干探测方法和机制-中国人民大学物理学系 (ruc.edu.cn)】
3. Tie-Huai Zhang, Wei-Min Wang*, Yu-Tong Li*, and Jie Zhang, Magnetization of high-density plasma with a jet velocity of hundreds of km/s, Phys. Rev. E 106, 055211 (2022).
4. Ge Zhou, Wei-Min Wang*, Yutong Li*, and Jie Zhang, Enhanced hot electron generation via laser interference, Phys. Plasmas 29, 052704 (2022).
5. Ming-Hao Zhang, Wen Xiao, Wei-Min Wang*, Rui Zhang, Cun-Lin Zhang, Xi-Cheng Zhang, and Liang-Liang Zhang*, Highly sensitive detection of broadband terahertz waves using aqueous salt solutions, Opt. Express 30, 39142 (2022).
6. T.-T. Qin, W. Luo*, H.-Y. Lan, and W.-M. Wang*, Ultrafast probing of plasma ion temperature in proton–boron fusion by nuclear resonance fluorescence emission spectroscopy, Matter and Radiation at Extremes 7, 035901 (2022).
7. Meng Liu, Jia-Xiang Gao, Wei-Min Wang*, and Yu-Tong Li*, Theoretical Study of the Efficient Ion Acceleration Driven by Petawatt-Class Lasers via Stable Radiation Pressure Acceleration, Appl. Sci. 12, 2924 (2022).
8. Feng Wan, Wei-Quan Wang, Qian Zhao, Hao Zhang, Tong-Pu Yu, Wei-Min Wang, Wen-Chao Yan, Yong-Tao Zhao, Karen Z. Hatsagortsyan, Christoph H. Keitel, Sergei V. Bulanov, and Jian-Xing Li, Quasimonoenergetic Proton Acceleration via Quantum Radiative Compression, Phys. Rev. Applied 17, 024049 (2022).
2021年:
1. Huai-Hang Song, Wei-Min Wang∗, and Yu-Tong Li∗, Generation of polarized positron beams via collisions of ultrarelativistic electron beams, Phys. Rev. Research 3, 033245 (2021).
2. Huai-Hang Song, Wei-Min Wang∗, Yan-Fei Li , Bing-Jun Li, Yu-Tong Li∗ , Zheng-Ming Sheng, Li-Ming Chen and Jie Zhang, Spin and polarization effects on the nonlinear Breit–Wheeler pair production in laser-plasma interaction, New J. Phys. 23, 075005 (2021).
3. Wei-Jun Zhou, Wei-Min Wang*, and Li-Ming Chen*, Enhanced ion acceleration in the relativistic transparent regime due to the laser rising edge, Plasma Phys. Control. Fusion 63, 035016 (2021).
2020年:
1. Wei-Min Wang*, Zheng-Ming Sheng*, Thomas Wilson, Yu-Tong Li*, and Jie Zhang, Guided propagation of extremely intense lasers in plasma via ion motion, Phys. Rev. E 101, 011201(R) (2020).
2. Huai-Hang Song, Wei-Min Wang*, Jia-Qi Wang, Yu-Tong Li*, and Jie Zhang, Low-frequency whistler waves excited by relativistic laser pulses, Phys. Rev. E 102, 053204 (2020).
3. Guang Hu, Wei-Qiang Sun, Bing-Jun Li, Yan-Fei Li*, Wei-Min Wang*, Meng Zhu, Hua-Si Hu*, and Yu-Tong Li, Quantum-stochasticity-induced asymmetry in the angular distribution of electrons in a quasiclassical regime, Phys. Rev. A 102, 042218 (2020).
4. Zhu Xing -Long,Wang Wei-Min*, Yu Tong -Pu,He Feng, Chen Min, Weng Su -Ming, Chen Li -Ming, Li Yu -Tong, Sheng Zheng -Ming*, Zhang Jie, Research progress of ultrabright g-ray radiation and electron-positron pair production driven by extremely intense laser fields, Acta Phys. Sin. 70, 085202 (2021).
5. Yan-Fei Li, Yue-Yue Chen, Wei-Min Wang, and Hua-Si Hu, Production of Highly Polarized Positron Beams via Helicity Transfer from Polarized Electrons in a Strong Laser Field,Phys. Rev. Lett. 125, 044802 (2020).
6. Xing-Long Zhu, Min Chen*, Su-Ming Weng, Tong-Pu Yu, Wei-Min Wang, Feng He, Zheng-Ming Sheng*, Paul McKenna, Dino A. Jaroszynski, Jie Zhang, Extremely brilliant GeV gamma-rays from a two-stage laser-plasma accelerator, Science Advances 6, eaaz7240 (2020).
7. Guo-Qian Liao, Hao Liu, Graeme G. Scott, Yi-Hang Zhang, Bao-Jun Zhu, Zhe Zhang, Yu-Tong Li, Chris Armstrong, Egle Zemaityte, Philip Bradford, Dean R. Rusby, David Neely, Peter G. Huggard, Paul McKenna, Ceri M. Brenner, Nigel C. Woolsey, Wei-Min Wang, Zheng-Ming Sheng, and Jie Zhang, Towards Terawatt-Scale Spectrally Tunable Terahertz Pulses via Relativistic Laser-Foil Interactions, Phys. Rev. X 10, 031062 (2020).
8. J. Zhang*, W. M. Wang, X. H. Yang, D. Wu, Y. Y. Ma, J. L. Jiao, Z. Zhang, F. Y. Wu, X. H. Yuan, Y. T. Li, J. Q. Zhu, Double-cone ignition scheme for inertial confinement fusion, Philosophical Transactions R. Soc. A 378, 20200015 (2020).
9. Kun Xue, Zhen-Ke Dou, Feng Wan, Tong-Pu Yu, Wei-Min Wang, Jie-Ru Ren, Qian Zhao, Yong-Tao Zhao, Zhong-Feng Xu, and Jian-Xing Li*, Matter Radiat. Extremes 5, 054402 (2020).
10. Siyuan Zhang, Jinqing Yu, Yinren Shou, Zheng Gong, Dongyu Li, Yixing Geng, Weimin Wang, Xueqing Yan, and Chen Lin*, Terahertz radiation enhanced by target ablation during the interaction of high intensity laser pulse and micron-thickness metal foil, Physics of Plasmas 27, 023101 (2020);
2019年:
1. Liang-Liang Zhang, Wei-Min Wang*, Tong Wu, Shi-Jia Feng, Kai Kang, Cun-Lin Zhang, Yan Zhang, Yu-Tong Li, Zheng-Ming Sheng*, and Xi-Cheng Zhang, Strong Terahertz Radiation from a Liquid-Water Line, Phys. Rev. Applied 12, 014005 (2019).
2. Huai-Hang Song, Wei-Min Wang*, Jian-Xing Li*, Yan-Fei Li, and Yu-Tong Li, Spin-polarization effects of an ultrarelativistic electron beam in an ultraintense two-color laser pulse, Phys. Rev. A 100, 033407 (2019).
3. Yihang Zhang, Wei-Min Wang*, Yutong Li*, Zhe Zhang, Paul McKenna, David Neely, and Jie Zhang, Effects of internal target structures on laser-driven neutron production, Nucl. Fusion 59, 076032 (2019).
4. Guoqian Liao, Yutong Li*, Hao Liu, Graeme G. Scott, David Neely*, Yihang Zhang, Baojun Zhu, Zhe Zhang, Chris Armstrong, Egle Zemaityte, Philip Bradford, Peter G. Huggard, Dean R. Rusby, Paul McKenna, Ceri M. Brenner, Nigel C. Woolsey, Weimin Wang, Zhengming Sheng, and Jie Zhang*, Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils, Proceedings of the National Academy of Sciences of the USA 116 (10), 3994-3999 (2019).
5. Jie Feng, Yifei Li, Jinguang Wang, Dazhang Li, Fang Li, Wenchao Yan, Weimin Wang, and Liming Chen, Gamma-ray emission from wakefield-accelerated electrons wiggling in a laser field, Scientific Reports 9, 2531 (2019).
6. C D Armstrong, C M Brenner, E Zemaityte, G G Scott, D R Rusby, G Liao, H Liu, Y Li, Z Zhang, Y Zhang, B Zhu, P Bradford, N C Woolsey, P Oliveira, C Spindloe, W Wang, P McKenna and D Neely, Bremsstrahlung emission profile from intense laser-solid interactions as a function of laser focal spot size, Plasma Phys. Control. Fusion 61, 034001 (2019).
2018年:
1. Wei-Min Wang*, Zheng-Ming Sheng, Paul Gibbon, Li-Ming Chen, Yu-Tong Li*, and Jie Zhang*, Collimated ultrabright gamma rays from electron wiggling along a petawatt laser-irradiated wire in the QED regime, Proceedings of the National Academy of Sciences of the USA 115 (40), 9911–9916 (2018). 【拍瓦强激光在固体细丝靶面驱动的超高亮度高能伽玛辐射 - 中国科学院物理研究所 (cas.cn)】
2. Wang Wei-Min*, Zhang Liang-Liang, Li Yu-Tong, Sheng Zheng-Ming, Zhang Jie, Theoretical and experimental studies on terahertz radiation from laser-driven air plasma, Acta Physica Sinica, 67(12) 124202 (2018).
3. Yan-Fei Li, Yu-Tong Li*, Wei-Min Wang*, Da-Wei Yuan, Bao-Jun Zhu, Jia-Yong Zhong, Hui-Gang Wei, Fang Li, Bo Han, Kai Zhang, Xiao-Xing Pei, Zhe Zhang, Jia-Rui Zhao, Chang Liu, Guo-Qian Liao, Zhi-Heng Fang, Chen Wang, Xiao-Gang Wang, Youichi Sakawa, Yong-Joo Rhee, Xin Lu, Neng Hua, Bao-Qiang Zhu, Taichi Morita, Yasuhiro Kuramitsu, Xiu-Guang Huang, Si-Zu Fu, Jian-Qiang Zhu, Gang Zhao & Jie Zhang, Laboratory Study on Disconnection Events in Comets, Scientific Reports 8, 463 (2018).
4. J. Y. Mao, O. Rosmej, Y. Ma, M. H. Li, B. Aurand, F. Gaertner, W. M. Wang, J. Urbancic, A. Schoenlein, B. Zielbauer, U. Eisenbarth, V. Bagnoud, F. Wagner, F. Horst, M. Syha, S. Mathias, Y. T. Li, M. Aeschlimann, L. M. Chen*, and T. Kuehl , Energy enhancement of the target surface electron by using a 200 TW sub-picosecond laser, Energy enhancement of the target surface, Opt. Lett. 43, 3909 (2018).
2017年:
1. Liang-Liang Zhang, Wei-Min Wang*, Tong Wu, Rui Zhang, Shi-Jing Zhang, Cun-Lin Zhang, Yan Zhang, Zheng-Ming Sheng, and Xi-Cheng Zhang, Observation of Terahertz Radiation via the Two-Color Laser Scheme with Uncommon Frequency Ratios, Phys. Rev. Lett. 119, 235001 (2017). 【物理所等澄清双色场太赫兹辐射方案推广及物理机制----“中科院之声”电子杂志 (cas.cn)】
2. W.-M. Wang*, Z.-M. Sheng, Y.-T. Li, Y. Zhang, and J. Zhang, Terahertz emission driven by two-color laser pulses at various frequency ratios, Phys. Rev. A 96, 023844 (2017).
3. W.-M. Wang*, P. Gibbon, Z.-M. Sheng, Y.-T. Li*, and J. Zhang, Laser opacity in underdense preplasma of solid targets due to quantum electrodynamics effects, Phys. Rev. E 96, 013201 (2017).
4. G Q Liao, Y T Li, C Li, H Liu, Y H Zhang, W M Jiang, X H Yuan, J Nilsen, T Ozaki, W M Wang, Z M Sheng, D Neely, P McKenna and J Zhang, Intense terahertz radiation from relativistic laser–plasma interactions, Plasma Phys. Control. Fusion 59,014039 (2017).
2016年:
1. Guo-Qian Liao, Yu-Tong Li, Yi-Hang Zhang, Hao Liu, Xu-Lei Ge, Su Yang, Wen-Qing Wei, Xiao-Hui Yuan, Yan-Qing Deng, Bao-Jun Zhu, Zhe Zhang, Wei-Min Wang, Zheng-Ming Sheng, Li-Ming Chen, Xin Lu, Jing-Long Ma, Xuan Wang, and Jie Zhang, Demonstration of Coherent Terahertz Transition Radiation from Relativistic Laser-Solid Interactions, Phys. Rev. Lett. 116, 205003 (2016).
2. C. Li, G.-Q. Liao, M.-L. Zhou, F. Du, J.-L. Ma, Y.-T. Li, W.-M. Wang, Z.-M. Sheng, L.-M. Chen, and J. Zhang, Backward terahertz radiation from intense laser-solid interactions, Opt. Express 24, 4010 (2016).
3. G.-Q. Liao, Y.-T. Li, C. Li, S. Mondal, H. A. Hafez, M. A. Fareed, T. Ozaki, W.-M. Wang, Z.-M. Sheng, and J. Zhang,Terahertz emission from two-plasmon-decay induced transient currents in laser-solid interactions, Phys. Plasmas 23, 013104 (2016).
2015年:
1. W.-M. Wang*, P. Gibbon, Z.-M. Sheng, and Y.-T. Li, Tunable Circularly Polarized Terahertz Radiation from Magnetized Gas Plasma, Phys. Rev. Lett. 114, 253901 (2015). 【强激光高能量密度物理研究新进展---面向激光聚变能量的新型快点火方案 - 中国科学院物理研究所 (cas.cn)】
2. W.-M. Wang*, P. Gibbon, Z.-M. Sheng, and Y.-T. Li, Magnetically Assisted Fast Ignition, Phys. Rev. Lett. 114, 015001 (2015). 【强激光高能量密度物理研究新进展---新型圆偏振强太赫兹光源 - 中国科学院物理研究所 (cas.cn)】
3. W.-M. Wang*, P. Gibbon, Z.-M. Sheng, and Y.-T. Li, Integrated simulation approach for laser-driven fast ignition, Phys. Rev. E 91, 013101 (2015).
4. Yin Chuan-Lei, Wang Wei-Min*, Liao Guo-Qian, Li Meng-Chao, Li Yu-Tong, and Zhang Jie, Ultrahigh-energy electron beam generated by ultra-intense circularly polarized laser pulses, Acta Phys. Sin. 64, 144102 (2015).
5. G. Q. Liao, Y. T. Li, C. Li, L. N. Su, Y. Zheng, M. Liu, W. M. Wang, Z. D. Hu, W. C. Yan, J. Dunn, J. Nilsen, J. Hunter, Y. Liu, X. Wang, L. M. Chen, J. L. Ma, X. Lu, Z. Jin, R. Kodama, Z. M. Sheng, and J. Zhang, Bursts of Terahertz Radiation from Large-Scale Plasmas Irradiated by Relativistic Picosecond Laser Pulses, Phys. Rev. Lett. 114, 255001 (2015).
6. M. Dalui, W.-M. Wang, T. M. Trivikram, S. Sarkar, S. Tata, J. Jha, P. Ayyub, Z. M. Sheng and M. Krishnamurthy*, Preferential enhancement of laser driven carbon ion acceleration from optimized nanostructured surfaces, Scientific Reports 5, 11930 (2015).
7. BJ Zhu, YT Li*, DW Yuan, YF Li, F Li, GQ Liao, JR Zhao, JY Zhong, FB Xue, SK He, WW Wang, F Lu, FQ Zhang, L Yang, KN Zhou, N Xie, W Hong, HG Wei, K Zhang, B Han, XX Pei, C Liu, Z Zhang, WM Wang, JQ Zhu, YQ Gu, ZQ Zhao, BH Zhang, G Zhao, J Zhang,Strong magnetic fields generated with a simple open-ended coil irradiated by high power laser pulses, Appl. Phys. Lett. 107, 261903 (2015).
8. Sheng Zheng-Ming*, Weng Su-Ming, Yu Lu-Le, Wang Wei-Min, Cui Yun-Qian, Chen Min, and Zhang Jie, Absorption of ultrashort intense lasers in laser–solid interactions,Chin. Phys. B 24, 015201 (2015) (TOPIC REVIEW).