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THz generation in plasmas using multiple color laser pulses

机译:使用多种颜色激光脉冲在等离子体中产生

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Experiments have demonstrated the generation of THz radiation when an intense, short laser pulse is mixed with its frequency-doubled counterpart in a gas. A number of mechanisms have been proposed to account for the observed THz radiation. Our analysis indicates that under the proper conditions the nonlinear coupling of the two short pulse lasers, one at frequency omega0 and the other at 2omega0 , in plasma can lead to the generation of THz radiation. The nonlinear coupling of the fundamental E1(omega0) and the frequency-doubled E2(2omega0) laser pulses is shown to lead to a third order susceptibility which has a time dependence characteristic of the laser pulse durations. Since the laser pulse duration is typically in the pico-second or sub-picosecond regime the resulting radiation is in the THz or multi-THz regime. The appropriate third order susceptibility is chi(3)(omega= 0; omega0,omega0,2omega0) and is proportional to(E1)2 E2. To obtain the third order susceptibility we solve the plasma fluid equations correct to third order in the laser fields, including both the relativistic and ponderomotive force terms. The relativistic and ponderomotive contributions to the susceptibility exactly cancel in the absence of electron collisions. Therefore, in this THz generation mechanism collisional effects play a critical role. In addition, THz generation depends on the relative polarizations of the lasers. We discuss the experimental observations and compare the results with our theoretical and numerical predictions.
机译:实验已经证明了在激烈的短的激光脉冲与其频率加倍的对应物中混合时的THz辐射的产生。已经提出了许多机制来解释观察到的THz辐射。我们的分析表明,在适当的条件下,两个短脉冲激光器的非线性耦合,一个在频率ω 0 ,另一个在2 omega 0 ,等离子体可以导致发电辐射。基本e 1 (Omega 0 )的非线性耦合和频率加倍e 2 (2omega 0 )示出激光脉冲导致具有激光脉冲持续时间的时间依赖性特性的第三阶易感性。由于激光脉冲持续时间通常在微微秒或亚微微秒的制度中,所得到的辐射是在THz或多条约的状态下。适当的第三阶易感性是Chi (3)(Omega = 0; Omega 0 ,Omega 0 ,2omega 0 )并且与(E 1 )的成比例 2 e 2 。为了获得第三阶敏感性,我们解决了激光场中的等离子体流体方程校正到第三顺序,包括相对论和思考力术语。在没有电子碰撞的情况下,对易感性的相对论和思考贡献精确地取消。因此,在这方面的一代机制碰撞效应发挥着关键作用。此外,THZ代层取决于激光器的相对偏振。我们讨论了实验观察,并将结果与​​我们的理论和数值预测进行了比较。

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