English

Thomson backscattering in combined uniform magnetic and envelope modulating circularly-polarized laser fields

Optics 2019-07-24 v1 General Physics

Abstract

The Thomson backscattering spectra in combined uniform magnetic and cosine-envelope circularly-polarized laser fields are studied in detail. With an introduction of the envelope modulation, the radiation spectra exhibit high complexity attributed to the strong nonlinear interactions. On the other hand, four fundamental laws related to the scale invariance of the radiation spectra are analytically revealed and numerically validated. They are the laws for the radiation energy as the 66th power of the motion constant exactly, also as the approximate negative 66th power with respect to the initial axial momentum and laser intensity in a certain of conditions, respectively, and finally an important self-similar law, i.e., when the circular laser frequency, the envelope modulation frequency, and the modified cyclotron frequency are simultaneously increased by a factor, the radiation energy will be increased by the second power of that factor without changing the shape of the spectrum. With the application of these laws, especially the last one, a much higher radiation energy can be obtained and the harmonic at which the maximum radiation occurs can be precisely tuned without changing its amplitude. These findings provide a possible way to advance radiation technology in many fields such as medicine, communications, astrophysics, and security.

Keywords

Cite

@article{arxiv.1812.09690,
  title  = {Thomson backscattering in combined uniform magnetic and envelope modulating circularly-polarized laser fields},
  author = {Julia Zhu and Bai-Song Xie},
  journal= {arXiv preprint arXiv:1812.09690},
  year   = {2019}
}

Comments

29 pages, 8 figures

R2 v1 2026-06-23T06:54:51.636Z