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High Power Terahertz (THz) Radiation Generation through the Nonlinear Interaction of Cosh-Gaussian Laser Beams in Cluster Plasma

机译:通过COST等离子体中的Cosh-Gaussian激光束的非线性相互作用产生高功率的Terahertz(Thz)辐射

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The nonlinear interaction of two co-propagating cosh-Gaussian laser beams in a cluster plasma is investigated and the electric field amplitude of emitted terahertz is evaluated. Due to spatial non-uniformity in the intensity of laser beam profiles, the cluster electron experience a nonlinear ponderomotive force at beat wave frequency in the perpendicular direction of the propagation wave. Due to this ponderomotive force, the cluster electrons acquire nonlinear oscillatory velocity. This oscillatory velocity couples with preformed density ripples to generate a strong transient nonlinear current which resonantly derives terahertz wave in the propagation direction of laser beams. The effects of laser beams and plasma parameters, including the decentered parameter, laser beam width, plasma density and amplitude of density ripples on the evaluation of THz electric field are examined, and it is found that the shape of generated THz radiation can be tuned by laser parameters. The THz filed amplitude strongly depends on the index of the decentered parameters of cosh-Gaussian beams and amplitude of density ripples.
机译:两个共同传播的双曲余弦高斯激光的非线性相互作用梁集群中的等离子体进行了研究和发射太赫波的电场幅度进行评价。由于在激光束分布,集群电子经验的传播波的垂直方向在拍波频率的非线性有质动力的强度的空间非均匀性。由于该有质动力,集群电子获得非线性振荡速度。此振荡速度夫妇具有预制密度波动,以产生共振导出太赫兹波在传播方向波的激光束强烈瞬变的非线性电流。束激光的影响,并等离子体参数,包括偏心参数,激光束的宽度,等离子体密度和太赫兹电场的评价密度波动的幅度进行检查,并且发现产生的THz辐射的形状可以通过被调谐激光参数。太赫兹日提交的振幅强烈依赖于双曲余弦高斯的偏心参数的索引梁和密度波动的幅度。

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