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A new class of exact solutions of the Klein-Gordon equation of a charged particle interacting with an electromagnetic plane wave in a medium

机译:介质中带电粒子与电磁平面波相互作用的Klein-Gordon方程的一类新的精确解

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摘要

Exact solutions are presented of the Klein-Gordon equation of a charged particle moving in a transverse monochromatic plasmon wave of arbitrary high amplitude, which propagates in an underdense plasma. These solutions are expressed in terms of Ince polynomials, forming a doubly infinite set, parametrized by discrete momentum components of the charged particle's de Broglie wave along the polarization vector and along the propagation direction of the plasmon radiation. The envelope of the exact wavefunctions describes a high-contrast periodic structure of the particle density on the plasma length scale, which may have relevance in novel particle acceleration mechanisms.
机译:给出了带电粒子在任意高振幅的横向单色等离激元波中移动的带电粒子的Klein-Gordon方程的精确解。这些解用Ince多项式表示,形成了一个双重无限集,由带电粒子的德布罗意波的离散动量分量沿极化矢量和沿等离激元辐射的传播方向进行参数化。精确波函数的包络线在等离子体长度尺度上描述了粒子密度的高对比度周期性结构,这可能与新型粒子加速机制有关。

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