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Generation of Tens-of-MeV Photons by Compton Backscatter from Laser-Plasma-Accelerated GeV Electrons

机译:来自激光等离子加速的GEV电子的Compton反向散射的Meve-MeV光子

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摘要

Previous work has demonstrated the use of a plasma mirror (PM), after a laser-plasma accelerator (LPA), for generating Compton γ-rays by retro-reflecting the spent laser pulse into the just-accelerated electrons. Here, we investigate the use of a PM to stimulate Compton backscatter (CBS) by retro-reflecting a spent pulse from the Texas Petawatt (TPW) laser after it has driven a cm-scale, GeV LPA. A comparative analysis between the electron and CBS pointing and divergence reveals strong agreement, from shot-to-shot, suggesting a reliable, non-invasive extension for GeV-beam metrology. Our observations confirm the self-aligning PM method is scalable to GeV LPAs, while also suggesting a technique with unique advantages and a robustness that can potentially be exploited for investigations of nonlinear Compton backscatter from ultralow divergence, GeV electrons using the Texas Petawatt Laser.
机译:以前的工作已经证明了在激光等离子体加速器(LPA)之后使用等离子体镜(PM),用于通过将废光激光脉冲复制到刚加速的电子中来产生COPONγ射线。在这里,我们调查PM通过从德克萨斯Petawatt(TPW)激光器的脉冲驱动CM级,GEV LPA之后通过复古反射康普顿反向散射(CBS)来刺激康普顿反向散射(CBS)。电子和CBS指向和发散之间的比较分析揭示了强烈的一致性,从拍摄到射击,表明GEV光束计量的可靠性非侵入性延伸。我们的观察结果证实了自对准PM方法可扩展到GEV LPA,同时还建议具有独特优点和具有稳健性的技术,这些技术可以利用来自超级散游的非线性康普顿反向散射的研究,使用Texas Petawatt激光来研究非线性康普顿反向散射。

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