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首页> 外文期刊>Applied optics >Simulation of grating compressor misalignment tolerances and mitigation strategies for chirped-pulse-amplification systems of varying bandwidths and beam sizes
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Simulation of grating compressor misalignment tolerances and mitigation strategies for chirped-pulse-amplification systems of varying bandwidths and beam sizes

机译:不同带宽和光束尺寸的啁啾脉冲放大系统光栅压缩机未对准公差及缓解策略的仿真

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摘要

The effects of pulse compressor grating misalignment on pulse duration and focusability are simulated for chirpedpulse-amplification systems of varying bandwidths, beam sizes, groove densities, and incident angles. Tilt-alignment tolerances are specified based on a root 2 drop in focused intensity, illustrating how tolerances scale with bandwidth and compressor beam size, which scales with energy when transformed via known grating damage thresholds. Grating-alignment tolerance scaling with grating groove density and incident/diffracted angles is investigated and applied to compressor design. A correlation between grating tip and in-plane rotation error sensitivity is defined and used to compensate residual out-of-plane angular dispersion, even for ultra-broadband pulses. Simulation of dispersion compensation methods after grating misalignment is shown to mitigate pulse lengthening, limited by temporal contrast degradation and higher-order effects for ultrabroad bandwidths. (C) 2019 Optical Society of America
机译:模拟脉冲压缩机光栅对脉冲持续时间和聚焦性的影响,用于不同的带宽,光束尺寸,凹槽密度和入射角的ChiredPuls-Sounderation系统。倾斜对准公差是基于聚焦强度的根部2下降指定的,示出了具有带宽和压缩机光束尺寸的公差如何,其通过已知光栅损伤阈值转换时具有能量的尺度。采用光栅槽密度和入射/衍射角度进行光栅对准公差缩放,并应用于压缩机设计。光栅尖端和面内旋转误差灵敏度之间的相关性被限定并用于补偿剩余的外平面角度分散,即使对于超宽带脉冲。在光栅错位后的色散补偿方法的仿真被示出为减轻脉冲延长,受到时间对比度的限制和超级带宽的高阶效应。 (c)2019年光学学会

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  • 来源
    《Applied optics》 |2019年第2期|共10页
  • 作者单位

    Univ Rochester Laser Energet Lab 250 East River Rd Rochester NY 14623 USA;

    Univ Rochester Laser Energet Lab 250 East River Rd Rochester NY 14623 USA;

    Univ Rochester Laser Energet Lab 250 East River Rd Rochester NY 14623 USA;

    Univ Rochester Laser Energet Lab 250 East River Rd Rochester NY 14623 USA;

    Univ Rochester Laser Energet Lab 250 East River Rd Rochester NY 14623 USA;

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  • 正文语种 eng
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