Cyclotron Emission with a Helical Wavefront from an Electron Accelerated by the Circularly Polarized Wave

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY Journal of Advanced Simulation in Science and Engineering Pub Date : 2020-01-01 DOI:10.15748/jasse.7.34
Y. Goto, S. Kubo, T. Tsujimura
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引用次数: 2

Abstract

In this paper, we calculated the radiation from the state where an electron in cyclotron motion under the uniform magnetic field Bex was accelerated by the externally applied circularly polarized wave with strong Ein and Bin. The electron was accelerated in the parallel direction by the term β⊥ × Bin (β⊥: perpendicular velocity of the electron) as well as in the perpendicular direction by the electric field of the wave Ein. Then, the electron can be resonantly accelerated when the Bex is set to the magnetic field strength which is equivalent to frequency of the externally applied circularly polarized wave. The radiation from such an accelerated electron was confirmed to have helical wavefront at harmonics cyclotron frequency.
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圆极化波加速电子的螺旋波前回旋辐射
本文计算了在均匀磁场Bex下回旋运动的电子被外加强Ein和强Bin的圆极化波加速状态下的辐射。电子在平行方向上被β⊥× Bin(电子的垂直速度)加速,在垂直方向上被Ein波的电场加速。然后,将Bex设置为与外源圆极化波频率相等的磁场强度时,可以实现电子的共振加速。从这样一个加速电子的辐射被证实具有螺旋波前在谐波回旋频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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