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Thomson backscattering X-rays from ultra-relativistic electron bunches and temporally shaped laser pulses

机译:汤姆森超相对论电子束和时间形状的激光脉冲对X射线的反向散射

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The process of Thomson scattering of an ultra-intense laser pulse by a relativistic electron bunch has been proposed as a way to obtain a bright source of short, tunable and quasi-monochromatic X-ray pulses. The real applicability of such a method depends crucially on the electron-beam quality, the angular and energetic distributions playing a relevant role. In this paper we present the computation of the Thomson-scattered radiation generated by a plane-wave, linearly polarized and flat-top laser pulse, incident on a counterprop-agating electron bunch having a sizable angular divergence and a generic energy distribution. Both linear and nonlinear Thomson-scattering regimes are considered and the impact of the rising front of the pulse on the scattered-radiation distribution has been taken into account. Simplified relations valid for long laser pulses and small values of both scattering angle and bunch divergence are also reported. Finally, we apply the results to the cases of backscattering with electron bunches typically produced with both standard radio-frequency-based accelerators and laser-plasma accelerators.
机译:已经提出相对论性电子束对超强激光脉冲进行汤姆森散射的方法,作为获得短,可调谐和准单色X射线脉冲的亮源的一种方法。这种方法的实际适用性主要取决于电子束的质量,角和能量分布起着重要的作用。在本文中,我们介绍了由平面波,线性偏振和平顶激光脉冲入射到具有相当大的角度发散和一般能量分布的反向传播电子束所产生的汤姆森散射辐射的计算。同时考虑了线性和非线性汤姆逊散射机制,并考虑了脉冲上升前沿对散射辐射分布的影响。还报告了对长激光脉冲有效的简化关系,以及散射角和束发散度均较小的值。最后,我们将结果应用于通常由基于标准射频的加速器和激光等离子加速器产生的电子束的反向散射情况。

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