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Temporally Resolved Intensity Contouring (TRIC) for characterization of the absolute spatio-temporal intensity distribution of a relativistic femtosecond laser pulse

机译:临时分辨强度轮廓(TRIC)用于表征相对论飞秒激光脉冲的绝对时空强度分布

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摘要

Today’s high-power laser systems are capable of reaching photon intensities up to 1022 W cm−2, generating plasmas when interacting with material. The high intensity and ultrashort laser pulse duration (fs) make direct observation of plasma dynamics a challenging task. In the field of laser-plasma physics and especially for the acceleration of ions, the spatio-temporal intensity distribution is one of the most critical aspects. We describe a novel method based on a single-shot (i.e. single laser pulse) chirped probing scheme, taking nine sequential frames at frame rates up to THz. This technique, to which we refer as temporally resolved intensity contouring (TRIC) enables single-shot measurement of laser-plasma dynamics. Using TRIC, we demonstrate the reconstruction of the complete spatio-temporal intensity distribution of a high-power laser pulse in the focal plane at full pulse energy with sub-picosecond resolution.
机译:当今的高功率激光系统能够达到高达10 22 W cm -2 的光子强度,在与材料相互作用时产生等离子体。高强度和超短激光脉冲持续时间(fs)使直接观察等离子体动力学成为一项艰巨的任务。在激光等离子体物理学领域中,尤其是对于离子加速而言,时空强度分布是最关键的方面之一。我们描述了一种基于单发(即单激光脉冲)chi探测方案的新颖方法,该方法以高达THz的帧频获取9个连续帧。这项技术(我们称为时间分辨强度轮廓法(TRIC))可以实现激光等离子体动力学的单次测量。使用TRIC,我们演示了在亚皮秒分辨率下,在全脉冲能量下,焦平面中高功率激光脉冲的完整时空强度分布的重建。

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