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Kinetic study of terahertz generation based on the interaction of two-color ultra-short laser pulses with molecular hydrogen gas

机译:基于双色超短激光脉冲与分子氢相互作用的太赫兹生成动力学研究

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In this work, using a two dimensional particle in cell-Monte Carlo collision simulation scheme, interaction of two-color ultra-short laser pulses with the molecular hydrogen gas (H-2) is examined. The operational laser parameters, i.e., its pulse shape, duration, and waist, are changed and, their effects on the density and kinetic energy of generated electrons, THz electric field, intensity, and spectrum are studied. It is seen that the best pulse shape generating the THz signal radiation with the highest intensity is a trapezoidal pulse, and the intensity of generated THz radiation is increased at the higher pulse durations and waists. For all the operational laser parameters, the maximum value of emitted THz signal frequency always remains lower than 5 THz. The intensity of applied laser pulses is taken about 10(14) w/cm(2), and it is observed that while a small portion of the gaseous media gets ionized, the radiated THz signal is significant. Published by AIP Publishing.
机译:在这项工作中,使用单元蒙特卡洛碰撞模拟方案中的二维粒子,研究了双色超短激光脉冲与分子氢气(H-2)的相互作用。改变工作激光参数,即其脉冲形状,持续时间和腰围,并研究其对所产生电子的密度和动能,太赫兹电场,强度和光谱的影响。可以看出,产生最高强度的THz信号辐射的最佳脉冲形状是梯形脉冲,并且在较高的脉冲持续时间和腰部,产生的THz辐射的强度会增加。对于所有可操作的激光参数,发射的THz信号频率的最大值始终保持低于5 THz。施加的激光脉冲强度大约为10(14)w / cm(2),可以观察到,虽然一小部分气态介质被电离,但辐射的THz信号却很明显。由AIP Publishing发布。

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