首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >New exact solutions of the Dirac and Klein-Gordon equations of a charged particle propagating in a strong laser field in an underdense plasma
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New exact solutions of the Dirac and Klein-Gordon equations of a charged particle propagating in a strong laser field in an underdense plasma

机译:在稀疏等离子体中在强激光场中传播的带电粒子的Dirac和Klein-Gordon方程的新精确解

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摘要

Exact solutions are presented of the Dirac and Klein-Gordon equations of a charged particle propagating in a classical monochromatic electromagnetic plane wave in a medium of index of refraction n_m < 1. In the Dirac case the solutions are expressed in terms of new complex polynomials, and in the Klein-Gordon case the found solutions are expressed in terms of Ince polynomials. In each case they form a doubly infinite set, labeled by two integer quantum numbers. These integer numbers represent quantized momentum components of the charged particle along the polarization vector and along the propagation direction of the electromagnetic radiation. Since this radiation may represent a plasmon wave of arbitrary high amplitude, propagating in an underdense plasma, the solutions obtained may have relevance in describing possible quantum features of novel acceleration mechanisms.
机译:给出了在折射率n_m <1的介质中在经典单色电磁平面波中传播的带电粒子的Dirac和Klein-Gordon方程的精确解。在Dirac情况下,解用新的复多项式表示,在Klein-Gordon案例中,找到的解以Ince多项式表示。在每种情况下,它们形成一个由两个整数量子数标记的双重无限集。这些整数表示带电粒子沿极化矢量和沿电磁辐射的传播方向的量化动量分量。由于此辐射可以表示在高密度等离子体中传播的任意高振幅的等离激元波,因此获得的解可能与描述新型加速机制的可能量子特征具有相关性。

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