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Making spectral shape measurements in inverse Compton scattering a tool for advanced diagnostic applications

机译:用逆康普顿散射进行光谱形状测量成为高级诊断应用的工具

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摘要

Interaction of relativistic electron beams with high power lasers can both serve as a secondary light source and as a novel diagnostic tool for various beam parameters. For both applications, it is important to understand the dynamics of the inverse Compton scattering mechanism and the dependence of the scattered light’s spectral properties on the interacting laser and electron beam parameters. Measurements are easily misinterpreted due to the complex interplay of the interaction parameters. Here we report the potential of inverse Compton scattering as an advanced diagnostic tool by investigating two of the most influential interaction parameters, namely the laser intensity and the electron beam emittance. Established scaling laws for the spectral bandwidth and redshift of the mean scattered photon energy are refined. This allows for a quantitatively well matching prediction of the spectral shape. Driving the interaction to a nonlinear regime, we spectrally resolve the rise of higher harmonic radiation with increasing laser intensity. Unprecedented agreement with 3D radiation simulations is found, showing the good control and characterization of the interaction. The findings advance the interpretation of inverse Compton scattering measurements into a diagnostic tool for electron beams from laser plasma acceleration.
机译:相对论电子束与高功率激光器的相互作用既可以用作辅助光源,又可以用作各种束参数的新颖诊断工具。对于这两种应用,了解逆康普顿散射机制的动力学以及散射光的光谱特性对相互作用的激光和电子束参数的依赖性非常重要。由于相互作用参数之间复杂的相互作用,因此很容易误解测量结果。在这里,我们通过研究两个最有影响力的相互作用参数,即激光强度和电子束发射率,报告了康普顿逆散射作为高级诊断工具的潜力。为光谱带宽和平均散射光子能量的红移建立的缩放定律得到完善。这允许对光谱形状进行定量良好匹配的预测。通过将交互作用驱动为非线性状态,我们可以解决随着激光强度增加而产生的高次谐波辐射的上升。发现与3D辐射模拟的前所未有的一致性,表明了对相互作用的良好控制和表征。这些发现将反康普顿散射测量的解释推向了用于诊断来自激光等离子体加速的电子束的诊断工具。

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