研究领域及方向
1. 激光等离子体物理
2. 激光核物理
3. 极化粒子束产生与调控等
科研项目
1. 国家自然科学基金委员会, 青年科学基金项目, 12105218, 准单能质子束与均匀稠密等离子体作用中的氢硼聚变核反应研究, 2022-01-01 至 2024-12-31, 30万元, 在研, 主持;
2. 中国博士后科学基金, 第67批面上资助, 2020M673367, 超强激光驱动多层级联等离子体快门的离子加速研究, 2020-07 至 2023-12, 8万元, 在研, 主持;
3. 中国工程物理研究院激光聚变研究中心, 重点实验室横向项目, J202108010, 等离子体能损与束流强度的关联规律研究, 2021-01 至 2022-12, 10万元, 结题, 主持;
4. 国家重点研发计划项目,2022YFA1603302,激光驱动高能强流粒子束与等离子体靶作用的核反应研究,2022-12-01 至 2027-11-30,675万,在研,参与。
科研文章
- Wen-Qing Wei, Feng Wan*, Yousef I. Salamin, Jie-Ru Ren, Karen Z. Hatsagortsyan, Christoph H. Keitel, Jian-Xing Li*, Yong-Tao Zhao*. All-optical ultrafast spin rotation for relativistic charged particle beams, Phys. Rev. Research 5, 023030 (2023).
- Wen-Qing Wei, Jia-Lin Zhang, Xu-Lei Ge, Meng Liu, Bo-Yuan Li, Jian-Xing Li, Yong-Tao Zhao*, Xiao-Hui Yuan*, Optically tunable proton acceleration with a controlled prepulse in ultrashort intense laser double-foil target interaction, Phys. Plasmas 30, 073101 (2023).
- Wen-Qing Wei, Shi-Zheng Zhang, et al., Proton-Boron Fusion Yield Increased by Orders of Magnitude with Foam Targets, Nature Communications (under review), arXiv:2308.10878 [physics.plasm-ph] (2023).
- W. Q. Wei, X. H. Yuan*, Y. Fang, G. Q. Liao, H. H. An, Y. Q. Deng, J. Gao, X. L. Ge, N. Hua, P. Hu, W. M. Jiang, Y. F. Li, M. T. Li, S. Yang, T. Yang, X. P. Zhang, L. M. Chen, Y.T. Li, G. Y. Hu, C. B. Fu, F. Liu, M. Chen, B. Q. Zhu, J. Q. Zhu, Z. M. Sheng, and J. Zhang*, Proton acceleration from vacuum-gapped double-foil target with low-contrast picosecond intense laser, Phys. Plasmas 25, 073108 (2018).
- W. Q. Wei, X. H. Yuan*, Y. Fang, Z. Y. Ge, X. L. Ge, S. Yang, Y. F. Li, G. Q. Liao, Z. Zhang, F. Liu, M. Chen, L. Zhao, H. B. Zhuo, Y. T. Li, Z. M. Sheng, and J. Zhang*, Plasma optical shutter in ultraintense laser-foil interaction, Phys. Plasmas 24,113111 (2017).
- A. Higginson, R. Gray, M. King, R. Dance, S Williamson, N. Butler, R.Wilson, R. Capdessus, C. Armstrong, J. Green, S. Hawkes, P. Martin, W. Q. Wei, S. Mirfayzi, X. H. Yuan, S. Kar, M. Borghesi, R. Clarke, D. Neely and P. McKenna*, Near-100 MeV protons via a laser-driven transparency-enhanced hybrid acceleration scheme, Nat. Commun. 9, 724, (2018).