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Coulomb effects in directional current excitation in the ionization of gas by a twocolor laser field

机译:双色激光场在气体电离中的定向电流激发中的库仑效应

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Macroscopic quasi-dc currents produced in gases ionized by intense two-color laser fields are known as an efficient source of highly intense broadband terahertz pulses. Recent experimental and theoretical studies give conflicting results regarding the optimal phase shift between the components of a two-color field to maximize the terahertz energy. To address these contradictions, we are studying the role of the effect of the Coulomb potential on the escaping electron in the formation of the ionization-induced directional photocurrents in a two-color scheme. We demonstrate that due to the Coulomb effects, the optimal phase shift between the fundamental field and its second harmonic strongly depends on the laser intensity. In a wide range of laser intensities, the Coulomb effects are shown to significantly influence the directional current generation.
机译:在强烈的双色激光场电离的气体中产生的宏观准直流电流被称为高效的高强度宽带太赫兹脉冲源。最近的实验和理论研究在两色场的各分量之间的最佳相移以最大化太赫兹能量方面给出了相互矛盾的结果。为了解决这些矛盾,我们正在研究在双色方案中库仑电势对逃逸电子的影响在电离诱导的定向光电流形成中的作用。我们证明,由于库仑效应,基本场与其二次谐波之间的最佳相移很大程度上取决于激光强度。在很宽的激光强度范围内,库仑效应显着影响定向电流的产生。

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