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High peak power Ti:sapphire lasers: temporal contrast and spectral narrowing issues

机译:高峰电源Ti:蓝宝石激光器:时间对比度和光谱缩小问题

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Two new schemes of chirped pulse amplification (CPA) lasers are demonstrated, which are specially designed to overcome some of the bottlenecks of the current Ti:sapphire lasers. In particular, the issues of temporal contrast and spectral narrowing of the pulse during amplification are considered. The proposed schemes are double CPA (DCPA) and the negatively- and positively-chirped pulse amplification (NPCPA). Both of them are an extension of the conventional CPA scheme to Ti:sapphire lasers of petawatt and higher power levels. The double DCPA laser includes two CPA stages with intermediate non-linear temporal pulse filtering. The method reduces substantially the background, including amplified spontaneous emission as well as pre- and post - pulses. The former is demonstrated by achieving a temporal contrast of at least 10~(10) with pulses of 20 mJ output energy and 50 fs pulse duration. The NPCPA laser scheme implements a combination of negatively- and positively-chirped pulse amplification. This method of amplification suppresses gain related spectral narrowing, typical to CPA lasers, thus supporting pulse spectrum much broader than a conventional CPA. With a NPCPA Ti:sapphire laser we have achieved laser pulses of 50 nm spectral width and 150 mJ energy without any additional spectral correction. The scheme appears as an easy and reliable solution to preserve spectral bandwidth in Ti:Sapphire lasers, especially at high power levels up to the Petawatt regime.
机译:演示了两个啁啾脉冲放大(CPA)激光器的新方案,其专门设计用于克服当前TI的一些瓶颈:蓝宝石激光器。特别地,考虑了扩增期间脉冲的时间对比度和光谱缩小的问题。所提出的方案是双CPA(DCPA)和呈否定和正啁啾脉冲放大(NPCPA)。它们都是传统CPA方案的扩展到TI:PETAWATT的蓝宝石激光器和更高的功率水平。双DCPA激光器包括两个具有中间非线性时间脉冲滤波的CPA级。该方法基本上减少了背景,包括放大的自发发射以及预先和后脉冲。前者通过实现至少10〜(10)的时间对比度,其具有20mJ输出能量的脉冲和50 fs脉冲持续时间。 NPCPA激光方案实现了负面和正啁啾脉冲放大的组合。这种放大方法抑制了增益相关光谱变窄,典型的CPA激光器,从而支持比传统CPA更广泛的脉冲谱。使用NPCPA TI:蓝宝石激光器,我们已经实现了50nm光谱宽度的激光脉冲和150 MJ能量,而无需任何额外的光谱校正。该方案似乎是一种简单可靠的解决方案,以便在TI中保留光谱带宽:蓝宝石激光器,尤其是高功率水平,直至PETAWATT制度。

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