Sub GV/CM terahertz radiation by coherent transition radition in ultrashort laser-solid interaction

W. Ding, Z. Sheng
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Abstract

Summary form only given. We achieved broadband terahertz radiation with extreme high peak power by femtosecond laser interaction with thin solid foil via particle-in-cell simulations. The angular distribution, temporal profile and spectra of the radiation are studied and reveal that it is coherent transition radiation emitted by hot electrons which are produced in laser plasma interaction and crossing the target surfaces. The THz radiations are emitted to the broad space, strongest along the target surface and weakest in a direction between the target normal and specular reflection direction. Under laser with different peak intensities from 1017 to 1019 W/cm2, the angular distribution of the radiations does not change much. Intensity of the THz radiation is explored and shows close correlation to the target and laser parameters. Conversion efficiency of the THz radiation can be as high as a few times of 10-3. A theory model is given, as well as comparison with recent experimental observations.
超短激光-固体相互作用中相干跃迁辐射的亚GV/CM太赫兹辐射
只提供摘要形式。通过粒子池模拟,利用飞秒激光与薄固体箔的相互作用,实现了具有极高峰值功率的宽带太赫兹辐射。研究了该辐射的角分布、时间分布和光谱,表明它是激光等离子体相互作用产生的热电子穿过目标表面发出的相干跃迁辐射。太赫兹辐射向宽空间发射,沿目标表面最强,在目标法向和镜面反射方向之间的方向最弱。在1017 ~ 1019 W/cm2不同峰强的激光照射下,辐射的角分布变化不大。对太赫兹辐射强度进行了研究,结果表明太赫兹辐射强度与目标和激光器参数密切相关。太赫兹辐射的转换效率可高达10-3的几倍。给出了一个理论模型,并与最近的实验观测结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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