首页> 外文期刊>Contributions to Plasma Physics >Generation of electromagnetic waves in the terahertz frequency range by optical rectification of a Gaussian laser pulse in a plasma in presence of an externally applied static electric field
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Generation of electromagnetic waves in the terahertz frequency range by optical rectification of a Gaussian laser pulse in a plasma in presence of an externally applied static electric field

机译:通过在外部施加的静电场上的等离子体中的高斯激光脉冲光学整流在太赫兹频率范围内产生电磁波。

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摘要

We propose a theoretical model for the generation of electromagnetic waves in the terahertz (THz) frequency range by the optical rectification of a Gaussian laser pulse in a plasma with an applied static electric field transverse to the direction of propagation. A Gaussian laser pulse can exert a transverse component of the quasi-static ponderomotive force on the electrons at a frequency in the THz range by a suitable choice of the laser pulse width. This nonlinear force is responsible for the density oscillation. The coupling of this oscillation with the drift velocity acquired by electrons due to the applied static electric field leads to the generation of a nonlinear current density. A spatial Gaussian intensity profile of the laser beam enhances the generated THz yield by many folds as compared to a uniform spatial intensity profile.
机译:我们提出了一种理论模型,用于通过等离子体中的高斯激光脉冲的光学整流在具有施加的静电横向于传播方向的等离子体中产生电磁波的理论模型。 高斯激光脉冲可以通过合适的激光脉冲宽度在THz范围内以频率在电子上施加横向部件。 这种非线性力负责密度振荡。 这种振荡与由于所施加的静电电场而获取的电子获得的漂移速度引起的非线性电流密度的产生。 与均匀的空间强度曲线相比,激光束的空间高斯强度分布增强了许多折叠的产生的THz产量。

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