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Nonlinear relativistic single-electron Thomson scattering power spectrum for incoming laser of arbitrary intensity

机译:任意强度入射激光的非线性相对论单电子汤姆逊散射能谱

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摘要

The classical nonlinear incoherent Thomson scattering power spectrum from a single relativistic electron with incoming laser radiation of any intensity, investigated numerically by the present authors in a previous publication, displayed both an approximate quadratic behavior in frequency and a redshift of the power spectrum for high intensity incoming radiation. The present work is devoted to justify, in a more general setup, those numerical findings. Those justifications are reinforced by extending suitably analytical approaches, as developed by other authors. Moreover, our analytical treatment exhibits differences between the Doppler-like frequencies for linear and circular polarization of the incoming radiation. Those differences depend nonlinearly on the laser intensity and on the electron initial velocity and do not appear to have been displayed by previous authors. Those Doppler-like frequencies and their differences are validated by new Monte Carlo computations beyond our previuos ones and reported here.
机译:本作者在以前的出版物中对数字进行了研究,从单一相对论电子到任意强度的入射激光辐射,对来自单个相对论电子的经典非线性非相干Thomson散射功率谱进行了研究,结果均显示了频率的近似二次曲线以及高强度时功率谱的红移入射辐射。本工作致力于以更一般的方式证明这些数值发现的合理性。正如其他作者所提出的那样,通过扩展适当的分析方法来加强这些论据。此外,我们的分析处理对入射辐射的线性和圆偏振显示出类似于多普勒的频率之间的差异。这些差异非线性地取决于激光强度和电子的初始速度,以前的作者似乎没有显示出来。这些类似多普勒的频率及其差值已通过我们之前未进行过的新蒙特卡罗计算得到了验证,并在此处进行了报道。

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