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Relativistic self-focusing in interaction of intense laser beam and exponential decay underdense inhomogeneous plasma

机译:密集非均匀等离子体中强激光束与指数衰减相互作用的相对论自聚焦

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In the laser and plasma interaction, Wong et al. (2018) and Fuchs et al. (2000) have found that the plasmas present theapproximate exponential or exponential decay variation of density in experiments. In the paper, based on their researchedresults, we investigated beam relativistic self-focusing in interaction of intense laser beam and axially exponential decayunderdense inhomogeneous plasma. The results show that the relativistic nonlinear effect gives rise to obvious selffocusingin homogeneous plasma and inhomogeneous plasma, comparing with beam self-focusing in homogeneousplasma, exponential decay inhomogeneous plasma is more benefit to form relatively steady self-focusing. Moreover,plasma inhomogeneity promotes self-focusing. In addition, when the amplitude of plasma inhomogeneity increases,beam self-focusing would obviously strengthen, while with the increase of the degree of exponential decay, self-focusingwould slightly decrease.
机译:在激光和等离子体的相互作用中,Wong等人。 (2018)和Fuchs等人。 (2000)发现等离子存在 实验中密度的近似指数或指数衰减变化。在论文中,基于他们的研究 结果,我们研究了强激光束与轴向指数衰减相互作用中的相对论性自聚焦 低密度不均匀血浆。结果表明,相对论非线性效应引起明显的自聚焦 在均质等离子体和不均质等离子体中,与在均质中的光束自聚焦相比 等离子体,指数衰减非均匀等离子体更有利于形成相对稳定的自聚焦。而且, 血浆不均匀会促进自我聚焦。另外,当血浆不均匀的幅度增加时, 束自聚焦将明显增强,而随着指数衰减程度的增加,自聚焦 会稍微减少。

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