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Spatiotemporal noise characterization for chirped-pulse amplification systems

机译:chi脉冲放大系统的时空噪声表征

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摘要

Optical noise, the core of the pulse-contrast challenge for ultra-high peak power femtosecond lasers, exhibits spatiotemporal (ST) coupling induced by angular dispersion. Full characterization of such ST noise requires two-dimensional measurements in the ST domain. Thus far, all noise measurements have been made only in the temporal domain. Here we report the experimental characterization of the ST noise, which is made feasible by extending cross-correlation from the temporal domain to the ST domain. We experimentally demonstrate that the ST noise originates from the optical surface imperfections in the pulse stretcher/compressor and exhibits a linear ST coupling in the far-field plane. The contrast on the far-field axis, underestimated in the conventional measurements, is further improved by avoiding the far-field optics in the stretcher. These results enhance our understanding of the pulse contrast with respect to its ST-coupling nature and pave the way toward the design of high-contrast ultra-high peak power lasers.
机译:光学噪声是超高峰值功率飞秒激光器的脉冲对比度挑战的核心,它表现出由角度色散引起的时空(ST)耦合。要充分表征此类ST噪声,需要在ST域中进行二维测量。到目前为止,所有噪声测量仅在时域进行。在这里,我们报告了ST噪声的实验表征,这是通过将互相关从时域扩展到ST域来实现的。我们实验证明,ST噪声源自脉冲扩展器/压缩器中的光学表面缺陷,并在远场平面中表现出线性ST耦合。通过避免在担架中使用远场光学器件,可以进一步改善在常规测量中低估的远场轴对比度。这些结果增强了我们对脉冲反差的ST耦合特性的理解,并为设计高对比度超高峰值功率激光器铺平了道路。

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