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Containing intense laser light in circular cavity with magnetic trap door

机译:带磁阱门的圆形腔体中包含强激光

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摘要

It is shown by particle-in-cell simulation that intense circularly polarized (CP) laser light can be contained in the cavity of a solid-density circular Al-plasma shell for hundreds of light-wave periods before it is dissipated by laser-plasma interaction. A right-hand CP laser pulse can propagate with almost no reflection and attenuation into the cavity through a highly magnetized overdense H-plasma slab filling the entrance hole. The entrapped laser light is then multiply reflected at the inner surfaces of the slab and shell plasmas, slowly losing energy to the latter. Compared to that of the incident laser, the frequency is only slightly broadened and the wave vector slightly modified by the appearance of weak nearly isotropic and homogeneous fluctuations.
机译:像元模拟显示,强圆形偏振(CP)激光在被激光等离子体消散之前,可以在固态光圆Al-等离子体外壳的腔中包含数百个光波周期。相互作用。右侧CP激光脉冲可以通过充满入口孔的高磁化过密度H等离子体平板几乎没有反射和衰减地传播到空腔中。然后,被捕获的激光在平板和外壳等离子的内表面处被多次反射,从而将能量缓慢地损失给后者。与入射激光相比,由于微弱的近乎各向同性和均匀波动的出现,频率仅略微加宽,波矢量略有改变。

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