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Self-guiding of high-intensity laser pulses for laser wake field acceleration

机译:激光唤醒场加速度高强度激光脉冲的自我引导

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摘要

A means of self‐guiding an ultrashort and high‐intensity laser pulse is demonstrated both experimentally and numerically. Its relevance to the laser wake field accelerator concept is discussed. Self‐focusing and multiple foci formation are observed when a high peak power (P≳100 GW), 1 μm, subpicosecond laser is focused onto various gases (air or hydrogen). It appears to result from the combined effects of self‐focusing by the gas, and de‐focusing both by diffraction and the plasma formed in the central high‐intensity region. Quasi‐stationary computer simulations show the same multiple foci behavior as the experiments. The results suggest much larger nonlinear electronic susceptibilities of a gas near or undergoing ionization in the high field of the laser pulse. Although self‐guiding of a laser beam by this mechanism appears to significantly extend its high‐intensity focal region, small‐scale self‐focusing due to beam non‐uniformity is currently a limitation.
机译:通过实验和数值在实验和数量上展示自向和高强度激光脉冲的方式。讨论了与激光唤醒领域加速器概念的相关性。当高峰值功率(P≳100GW),1μm,亚磷二秒激光聚焦在各种气体(空气或氢气)上时,观察到自对焦和多焦点形成。它似乎是由气体自聚焦的组合效应,并通过衍射和中央高强度区域中形成的等离子体进行去聚焦。准固定式计算机模拟显示与实验相同的多个焦点行为。结果表明,在激光脉冲的高场中的气体附近或接受电离的气体的较大非线性电子敏感性。尽管通过这种机制的激光束的自引导似乎显着地扩展了其高强度焦点区域,但由于光束不均匀性引起的小规模自聚焦是目前有限的。

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  • 作者

    D. Umstader; X. Liu;

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  • 年度 1992
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