The Motion of a Charged Particle in the Electromagnetic Field of a Polarization-Modulated Wave

G. Kopytov, D. Kudryavtsev, V. Brazhko
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Abstract

This article presents an exact solution of the equation of motion of a charged particle in the electromagnetic field of a high-intensity polarization-modulated wave. Expressions for the average kinetic energy of a particle without regard to its rest energy in the case of circular and linear polarization of a modulated wave are obtained. The motion of a charged particle in the field was analyzed and expressed in terms of dependences of its average kinetic energy on the electromagnetic wave intensity and on various types of modulation depths. The contribution of each type of modulation to the energy characteristics of a charged particle was demonstrated. Solving the equation of motion of a charged particle in the electromagnetic field of a plane wave opens up possibilities for various applications related, in particular, to various developments of multi-frequency lasers and laser modulation technology. This study was proposed due to the growing interest in experiments using high-intensity femtosecond laser radiation and high-temperature plasma
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极化调制波电磁场中带电粒子的运动
本文给出了带电粒子在高强度极化调制波电磁场中运动方程的精确解。得到了调制波在圆极化和线极化情况下,不考虑其静止能量的粒子平均动能的表达式。分析了带电粒子在场中的运动,用平均动能与电磁波强度和不同调制深度的关系表示了带电粒子的运动。论证了每种调制方式对带电粒子能量特性的贡献。求解平面波电磁场中带电粒子的运动方程,为各种应用开辟了可能性,特别是与多频激光器和激光调制技术的各种发展有关。由于人们对高强度飞秒激光辐射和高温等离子体的实验越来越感兴趣,因此提出了这项研究
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
40
期刊介绍: The journal is aimed at publishing most significant results of fundamental and applied studies and developments performed at research and industrial institutions in the following trends (ASJC code): 2600 Mathematics 2200 Engineering 3100 Physics and Astronomy 1600 Chemistry 1700 Computer Science.
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