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首页> 外文期刊>Journal of the Optical Society of America B: Optical Physics >Spectrum shaping of an all Nd:glass CPA 1–10 ps kilojoule petawatt-class laser system
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Spectrum shaping of an all Nd:glass CPA 1–10 ps kilojoule petawatt-class laser system

机译:全Nd:玻璃CPA 1-10 ps千焦皮瓦级激光系统的频谱整形

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摘要

We propose a new method for the chirped pulse spectrum shaping, which is significant in chirped pulse amplification (CPA) system to compensate the gain narrowing and the gain saturation, to obtain the shortest compressed pulse, and to improve the signal-to-noise ratio (SNR) of the output, while simultaneously increasing the amplifier efficiencies. This method is based on a grating system to decompose the chirped pulse spectrum to a spatial space, a microstructure on a multilayer dielectric thin film as a functional reflector to shape the space distribution, and a synthesis system to compose this space distribution to a shaped frequency chirped pulse before incidence into the next amplifier stage. The results show that the damage threshold by the high-power laser can be enhanced, and this functional reflector can be fabricated in an easy and cheap way, in which the accuracy in lithography is 1 μm, the etching tolerance is 35 nm, and the roughness of the etching surface is 8.5 nm. In addition, the phase aberration is less than 12 mrad in the chirped bandwidth of a few tens of nanometers, and the spatial distribution of the final output almost remains. The studies show that the energy integral of the output chirped pulse is extracted 17% and 29.5% more with center and off-center modulations, respectively, compared with the normal amplification. Moreover, the SNR has enhanced to 1010:1at 10 ps after spectrum shaping, which enhances the SNR near 1–2 orders than that without the spectrum shaping.
机译:我们提出了一种新的for脉冲频谱整形方法,该方法在chi脉冲放大(CPA)系统中具有重要意义,可以补偿增益变窄和增益饱和,获得最短的压缩脉冲,并提高信噪比(SNR)输出,同时提高放大器效率。该方法基于光栅系统,将chi脉冲频谱分解为空间空间;多层电介质薄膜上的微结构作为功能反射器,以对空间分布进行整形;以及合成系统,将空间分布构成为一定的频率incidence脉冲在入射之前进入下一放大器级。结果表明,可以提高大功率激光器的损伤阈值,并且可以以简单且便宜的方式制造这种功能性反射器,其中光刻精度为1μm,蚀刻容差为35 nm,并且蚀刻表面的粗糙度为8.5nm。此外,在几十纳米的chi带宽中,相差小于12毫拉德,几乎保留了最终输出的空间分布。研究表明,与正常放大相比,在中心和偏心调制下,输出线性调频脉冲的能量积分分别增加了17%和29.5%。此外,频谱整形后的SNR在10 ps时已提高到1010:1,这比没有频谱整形的SNR提高了1-2个数量级。

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