大学物理 ›› 2025, Vol. 44 ›› Issue (11): 61-.doi: 10.16854/j.cnki.1000-0712.250126

• 物理实验 • 上一篇    下一篇

匀速运动带电粒子产生辐射电磁场的COMSOL仿真

黄忠,陈青   

  1. 江苏第二师范学院 物理与电子信息学院,南京211200
  • 收稿日期:2025-03-10 修回日期:2025-03-31 出版日期:2026-01-19 发布日期:2026-01-20
  • 作者简介:黄忠(1988—),男,江苏常州人,南京大学物理学系博士,主要从事大学物理实验教学和微纳光学研究工作.
  • 基金资助:
    国家自然科学基金青年项目(11904139)资助

COMSOL simulation of radiated electromagnetic field generated by uniformly moving charged particles

  1. School of Physics & Electronic Information, Jiangsu Second Normal University, Nanjing 210013, China
  • Received:2025-03-10 Revised:2025-03-31 Online:2026-01-19 Published:2026-01-20

摘要: 切伦科夫辐射和Smith-Purcell辐射是指匀速运动带电粒子向外辐射电磁场的现象,常用于设计制造高效可控的太赫兹光源.由于复杂的理论推导和实验探索的受限性,学生在课堂学习中较难形成清晰的物理图像.本文使用COMSOL软件对上述两种现象进行了研究,定量给出了带电粒子速度大小对辐射电磁场功率、方向以及频率的影响,模拟仿真结果与理论预期吻合.此外本文还通过仿真计算给出了一种在0-60W的功率范围和1.2-1.8THz频率范围内,连续调控Smith-Purcell辐射功率与辐射频率的简单方法,并阐述了其原理.本工作有助于学生形成关于带电粒子电磁辐射的物理图像,同时也可以作为相关物理教学定量实验设计的补充.

关键词: 切伦科夫辐射, SmithPurcell辐射, COMSOL, 模拟仿真, 太赫兹

Abstract: Cherenkov radiation and SmithPurcell radiation refer to the phenomenon of uniformly moving charged particles radiating electromagnetic fields outward, which commonly used in the design and fabrication of efficient and controllable terahertz light sources.Due to the limitations of complex theoretical deduction and experimental exploration, students find it difficult to form clear physical images in classroom learning. This article uses COMSOL software to study the above two phenomena and quantitatively provides the influence of charged particle velocity on the power, direction, and frequency of the radiated electromagnetic field. The simulation results are consistent with theoretical expectations. In addition, this article also presents a simple method for continuously tuning the radiation power and frequency of SmithPurcell radiation in the power range of 060 W and the frequency range of 1.21.8 THz, and gives the explanation of its physical mechanism. This work will help students form physical images of electromagnetic radiation from charged particles, and can also serve as a supplement to quantitative experimental design in related physics teaching.


Key words: Cherenkov radiation, SmithPurcell radiation, COMSOL, simulation, Terahertz