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首页> 外文期刊>Physics of plasmas >Simultaneous stimulated Raman, Brillouin, and electron-acoustic scattering reveals a potential saturation mechanism in Raman plasma amplifiers
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Simultaneous stimulated Raman, Brillouin, and electron-acoustic scattering reveals a potential saturation mechanism in Raman plasma amplifiers

机译:同时受激拉曼,布里渊和电子声散射揭示了拉曼等离子体放大器的潜在饱和机制

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摘要

In a Raman plasma amplifier, the aim is to create plasma conditions in which Raman backscattering is the fastest growing instability, outrunning all competing effects so that it is possible to amplify and compress a laser beam to unprecedented unfocused intensities by utilizing that instability. However, achieving high efficiencies via this scheme has proven very difficult experimentally. Recent data show the simultaneous occurrence of stimulated Raman scattering (SRS), stimulated Brillouin scattering (SBS), and stimulated electron-acoustic scattering (SEAS). The appearance of SEAS is indicative of strong particle trapping, the existence of which is hard to justify without highlighting the interplay between SRS and SBS.
机译:在拉曼等离子体放大器中,目标是创造一种等离子体条件,其中拉曼后向散射是增长最快的不稳定性,它超越了所有竞争效应,因此可以利用这种不稳定性将激光束放大并压缩到前所未有的未聚焦强度。但是,通过实验证明,通过这种方案实现高效率非常困难。最新数据显示,同时发生了拉曼散射(SRS),布里渊散射(SBS)和电子声散射(SEAS)。 SEAS的出现表明强烈的粒子捕获,如果不突出SRS和SBS之间的相互作用,则很难证明其存在。

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