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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Parametric instabilities of intense lasers from interaction with relativistic hot plasmas
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Parametric instabilities of intense lasers from interaction with relativistic hot plasmas

机译:与相对论热等离子体相互作用引起的强激光的参数不稳定性

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摘要

The stimulated Raman scattering (SRS) and relativistic modulational instability (RMI) of intense lasers in relativistic hot plasmas are studied, using the waterbag distribution in momentum space. Two cases are considered: a single hot electron distribution and a cold plasma attached with a hot electron tail. It is shown that both high temperatures and hot electron tails can significantly reduce the instability growth rates, shift the unstable regions in the wave-vector space, and change the Raman scattering frequency spectra from the cold plasma theory. In particular, at low-light intensities, there exists a cutoff thermal velocity beyond which SRS is completely suppressed. At high-light intensities, no clear cutoff thermal velocity is found owing to the merging of SRS with RMI. [References: 36]
机译:利用动量空间中的水袋分布,研究了相对论热等离子体中强激光的受激拉曼散射(SRS)和相对论调制不稳定性(RMI)。考虑两种情况:单个热电子分布和附着有热电子尾部的冷等离子体。结果表明,高温和热电子尾部都可以显着降低不稳定性的增长速度,移动波矢量空间中的不稳定区域,并根据冷等离子体理论改变拉曼散射频谱。特别地,在低光强度下,存在截止热速度,超过该截止热速度就完全抑制了SRS。在高光照强度下,由于SRS与RMI的合并,没有发现明确的截止热速度。 [参考:36]

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