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Parametric study of broadband terahertz radiation generation based on interaction of two-color ultra-short laser pulses

机译:基于双色超短激光脉冲相互作用的宽带太赫兹辐射产生的参数研究

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In this work, using a two-dimensional kinetic model based on particle in cell-Monte Carlo collision simulation method, the influence of different parameters on the broadband intense Terahertz (THz) radiation generation via application of two-color laser fields, i.e., the fundamental and second harmonic modes, is studied. These two modes are focused into the molecular oxygen (O-2) with uniform density background gaseous media and the plasma channels are created. Thus, a broadband THz pulse that is around the plasma frequency is emitted from the formed plasma channel and co-propagates with the laser pulse. For different laser pulse shapes, the THz electric field and its spectrum are both calculated. The effects of laser pulse and medium parameters, i.e., positive and negative chirp pulse, number of laser cycles in the pulse, laser pulse shape, background gas pressure, and exerted DC electric field on THz spectrum are verified. Application of a negatively chirped femtosecond (40 fs) laser pulse results in four times enhancement of the THz pulse energy (2 times in THz electric field). The emission of THz radiation is mostly observed in the forward direction. (C) 2015 AIP Publishing LLC.
机译:在这项工作中,使用基于粒子的二维动力学模型进行单元蒙特卡罗碰撞模拟方法,通过应用双色激光场,不同参数对宽带强烈太赫兹(THz)辐射产生的影响。研究了基波和二次谐波模式。这两种模式集中在具有均匀密度背景气态介质的分子氧(O-2)中,并创建了等离子体通道。因此,从所形成的等离子体通道发射在等离子体频率附近的宽带太赫兹脉冲,并与激光脉冲共同传播。对于不同的激光脉冲形状,都计算了太赫兹电场及其频谱。验证了激光脉冲和介质参数(即正和负线性调频脉冲),脉冲中的激光周期数,激光脉冲形状,背景气压以及在THz光谱上施加的直流电场的影响。施加负chi飞秒(40 fs)激光脉冲会导致THz脉冲能量提高四倍(在THz电场中提高2倍)。太赫兹辐射的发射主要在正向观察到。 (C)2015 AIP Publishing LLC。

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