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固体密度氢喷流中高强度激光等离子体膨胀动力学的非谐波光学探测

Off-harmonic optical probing of high intensity laser plasma expansion dynamics in solid density hydrogen jets.

作者信息

Bernert Constantin, Assenbaum Stefan, Brack Florian-Emanuel, Cowan Thomas E, Curry Chandra B, Garten Marco, Gaus Lennart, Gauthier Maxence, Göde Sebastian, Goethel Ilja, Glenzer Siegfried H, Kluge Thomas, Kraft Stephan, Kroll Florian, Kuntzsch Michael, Metzkes-Ng Josefine, Loeser Markus, Obst-Huebl Lieselotte, Rehwald Martin, Schlenvoigt Hans-Peter, Schoenwaelder Christopher, Schramm Ulrich, Siebold Mathias, Treffert Franziska, Ziegler Tim, Zeil Karl

机构信息

Helmholtz-Zentrum Dresden-Rossendorf, 01328, Dresden, Germany.

Technische Universität Dresden, 01062, Dresden, Germany.

出版信息

Sci Rep. 2022 May 4;12(1):7287. doi: 10.1038/s41598-022-10797-6.

Abstract

Due to the non-linear nature of relativistic laser induced plasma processes, the development of laser-plasma accelerators requires precise numerical modeling. Especially high intensity laser-solid interactions are sensitive to the temporal laser rising edge and the predictive capability of simulations suffers from incomplete information on the plasma state at the onset of the relativistic interaction. Experimental diagnostics utilizing ultra-fast optical backlighters can help to ease this challenge by providing temporally resolved inside into the plasma density evolution. We present the successful implementation of an off-harmonic optical probe laser setup to investigate the interaction of a high-intensity laser at [Formula: see text] peak intensity with a solid-density cylindrical cryogenic hydrogen jet target of [Formula: see text] diameter as a target test bed. The temporal synchronization of pump and probe laser, spectral filtering and spectrally resolved data of the parasitic plasma self-emission are discussed. The probing technique mitigates detector saturation by self-emission and allowed to record a temporal scan of shadowgraphy data revealing details of the target ionization and expansion dynamics that were so far not accessible for the given laser intensity. Plasma expansion speeds of up to [Formula: see text] followed by full target transparency at [Formula: see text] after the high intensity laser peak are observed. A three dimensional particle-in-cell simulation initiated with the diagnosed target pre-expansion at [Formula: see text] and post processed by ray tracing simulations supports the experimental observations and demonstrates the capability of time resolved optical diagnostics to provide quantitative input and feedback to the numerical treatment within the time frame of the relativistic laser-plasma interaction.

摘要

由于相对论激光诱导等离子体过程的非线性特性,激光等离子体加速器的发展需要精确的数值模拟。特别是高强度激光与固体的相互作用对激光的上升沿时间很敏感,并且模拟的预测能力因相对论相互作用开始时等离子体状态的信息不完整而受到影响。利用超快光学背光照相的实验诊断方法可以通过提供等离子体密度演化的时间分辨信息来帮助缓解这一挑战。我们展示了一种非谐波光学探针激光装置的成功实现,用于研究峰值强度为[公式:见原文]的高强度激光与直径为[公式:见原文]的固体密度圆柱形低温氢射流靶的相互作用,该靶作为一个靶测试平台。讨论了泵浦激光和探针激光的时间同步、光谱滤波以及寄生等离子体自发射的光谱分辨数据。该探测技术减轻了自发射对探测器的饱和影响,并能够记录阴影图数据的时间扫描,揭示了目标电离和膨胀动力学的细节,这些细节在给定激光强度下以前是无法获得的。观察到等离子体膨胀速度高达[公式:见原文],在高强度激光峰值后[公式:见原文]时靶完全透明。一个以诊断出的靶在[公式:见原文]时的预膨胀为初始条件并通过光线追踪模拟进行后处理的三维粒子模拟支持了实验观察结果,并证明了时间分辨光学诊断能够在相对论激光 - 等离子体相互作用的时间框架内为数值处理提供定量输入和反馈。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/920d/9068928/03fd29fa2a89/41598_2022_10797_Fig1_HTML.jpg

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