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首页> 外文期刊>Physical Review. Accelerators and Beams >Broadening of cyclotron resonance conditions in the relativistic interaction of an intense laser with overdense plasmas
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Broadening of cyclotron resonance conditions in the relativistic interaction of an intense laser with overdense plasmas

机译:强激光与过稠等离子体的相对论相互作用中回旋加速器共振条件的拓宽

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摘要

The interaction of dense plasmas with an intense laser under a strong external magnetic field has been investigated. When the cyclotron frequency for the ambient magnetic field is higher than the laser frequency, the laser's electromagnetic field is converted to the whistler mode that propagates along the field line. Because of the nature of the whistler wave, the laser light penetrates into dense plasmas with no cutoff density, and produces superthermal electrons through cyclotron resonance. It is found that the cyclotron resonance absorption occurs effectively under the broadened conditions, or a wider range of the external field, which is caused by the presence of relativistic electrons accelerated by the laser field. The upper limit of the ambient field for the resonance increases in proportion to the square root of the relativistic laser intensity. The propagation of a large-amplitude whistler wave could raise the possibility for plasma heating and particle acceleration deep inside dense plasmas.
机译:研究了密集等离子体与强激光在强外部磁场下的相互作用。当周围磁场的回旋加速器频率高于激光频率时,激光的电磁场将转换为沿磁力线传播的惠斯勒模式。由于惠斯勒波的性质,激光会穿透没有截止密度的密集等离子体,并通过回旋共振产生超热电子。发现回旋加速器共振吸收在宽的条件下或在更宽的外部场范围内有效发生,这是由激光场加速的相对论电子的存在引起的。共振环境场的上限与相对论激光强度的平方根成比例地增加。大幅度的惠斯勒波的传播可能会增加等离子体加热和密集等离子体内部深处的粒子加速的可能性。

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