论文标题

豪华的精密激光诊断

Precision laser diagnostics for LUXE

论文作者

Prasad, Rajendra

论文摘要

强场QED是一个积极的研究前沿。在非线性QED制度中对基本现象,诸如成对创造,光子 - 光子和光子电子相互作用等基本现象的研究都是一个巨大的挑战 - 无论是在实验和理论上。正在计划或准备探究这种强大的现场制度。 Luxe(激光UND XFEL实验)是一个实验平台,它设想了欧洲XFEL加速器的高质量16.5 GEV电子束的碰撞,并具有100 TW类高功率激光器的碰撞。 Luxe的独特功能之一是测量关键可观察物,例如配对速率($ e^+e^ - $),并具有前所未有的精度,并在两种梁的表征以及足够的统计范围内表征。高能粒子和光子检测的最先进的检测器技术使百分比级别的精度。最先进的高功率激光器提供了高质量的激光束,但是,残留的射击波动以及正在调查的过程的较大非线性构成了特定的挑战。绝对激光强度的不确定性为5%,已经导致对速率非常大(约40%)。因此,精确控制激光参数至关重要。为了减轻此问题,目前正在Jena的Jeti40激光器开发一套完整的激光诊断套件,目的是将射击强度标记为不到1%。在此演示文稿中,将介绍激光器和所有激光参数的单个射击标签的诊断案例。此外,将讨论持续的运动的持续运动的结果,即将讨论没有明显失真的激光束参数进行后诊断的光束。

Strong field QED is an active research frontier. The investigation of fundamental phenomena such as pair creation, photon-photon and photon-electron interactions in the nonlinear QED regime are a formidable challenge -- both experimentally and theoretically. Several experiments around the world are being planned or in preparation to probe this strong field regime. LUXE (Laser Und XFEL Experiment) is an experimental platform which envisages the collision of the high quality 16.5 GeV electron beam from the European XFEL accelerator with a 100 TW class high power laser. One of the unique features of LUXE is to measure the key observables such as pair rates ($e^+e^-$) with unprecedented accuracy in the characterization of both beams together with ample statistics. The state-of-art detector technologies for high energy particle and photon detection enable percent level precision. The state-of-art high power lasers offer high quality laser beams, however, the residual shot-to-shot fluctuations coupled with the large nonlinearity of the processes under investigation form a particular challenge. An uncertainty of 5 percent on the absolute laser intensity already leads to a very large ( about 40 percent) uncertainty in the pair rate. Hence it becomes essential to control the laser parameters precisely. To mitigate this issue a full suite of laser diagnostics is being currently developed at the JETI40 laser in Jena with the aim of tagging the shot intensity to less than 1 percent. In this presentation, details of the laser and the diagnostics suit for the single shot tagging of all the laser parameters will be presented. Moreover, results from an ongoing campaign to properly relay image the beam without significant distortion of the laser beam parameters for post-diagnosis will be discussed.

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