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Terahertz radiation driven by two-color laser pulses at near-relativistic intensities: Competition between photoionization and wakefield effects

机译:接近相对论强度的双色激光脉冲驱动的太赫兹辐射:光电离和尾场效应之间的竞争

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摘要

We numerically investigate terahertz (THz) pulse generation by linearly-polarized, two-color femtosecond laser pulses in highly-ionized argon. Major processes consist of tunneling photoionization and ponderomotive forces associated with transverse and longitudinal field excitations. By means of two-dimensional particle-in-cell (PIC) simulations, we reveal the importance of photocurrent mechanisms besides transverse and longitudinal plasma waves for laser intensities >1015 W/cm2. We demonstrate the following. (i) With two-color pulses, photoionization prevails in the generation of GV/m THz fields up to 1017 W/cm2 laser intensities and suddenly loses efficiency near the relativistic threshold, as the outermost electron shell of ionized Ar atoms has been fully depleted. (ii) PIC results can be explained by a one-dimensional Maxwell-fluid model and its semi-analytical solutions, offering the first unified description of the main THz sources created in plasmas. (iii) The THz power emitted outside the plasma channel mostly originates from the transverse currents.
机译:我们用数值方法研究了高度电离的氩气中线性偏振,双色飞秒激光脉冲产生的太赫兹(THz)脉冲。主要过程包括隧道光电离和与横向和纵向场激发相关的质动力。通过二维粒子模拟(PIC),我们揭示了除了横向和纵向等离子体波外,对于> 10 15 W / cm 2 < / sup>。我们演示以下内容。 (i)使用双色脉冲时,在高达10 17 W / cm 2 激光强度的GV / m THz场中,光电离现象占主导地位,并且在接近相对论阈值,因为电离的Ar原子的最外层电子壳已被完全耗尽。 (ii)PIC结果可以用一维麦克斯韦流体模型及其半解析解来解释,从而对血浆中产生的主要太赫兹源进行了首次统一描述。 (iii)等离子体通道外部发射的太赫兹功率主要来自横向电流。

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