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SNR improvement based on non-collinear OPCPA with angular spectral dispersion in BBO crystal

机译:BBO晶体中基于非共线OPCPA和角频谱色散的SNR改善

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摘要

The characteristics of the signal-to-noise ratio (SNR) improvement based on non-collinear optical parametric chirped pulse amplification (OPCPA) with angular spectral dispersion (ASD) was revealed and investigated. The angular dispersion formula was derived theoretically and the effects of crystal length, pump peak intensity, noise characteristics and angular dispersion on the SNR improvement and conversion efficiency were discussed. Furthermore, by optimizing the critical parameters, 35% conversion efficiency and more than 3 orders of magnitude of SNR improvement were achieved for the chirped signal pulse with a central wavelength of 800 nm, pumped by 532 nm in presented amplification scheme with BBO crystal.
机译:揭示并研究了基于非共线性光参量pulse脉冲放大(OPCPA)和角光谱色散(ASD)的信噪比(SNR)改善特性。从理论上推导了角度色散公式,并讨论了晶体长度,泵浦峰强度,噪声特性和角度色散对SNR改善和转换效率的影响。此外,通过优化关键参数,在提出的带有BBO晶体的放大方案中,对于中心波长为800 nm,以532 nm泵浦的the信号脉冲,可以实现35%的转换效率和3个数量级以上的SNR改善。

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