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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Theoretical model to suppress parasitic lasing in large-aperture Ti:sapphire amplifiers using a temporal dual-pulse pump
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Theoretical model to suppress parasitic lasing in large-aperture Ti:sapphire amplifiers using a temporal dual-pulse pump

机译:使用时间双脉冲泵抑制大孔径Ti:蓝宝石放大器中的寄生激光的理论模型

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摘要

Transverse parasitic lasing (PL) in large-aperture Ti:sapphire (Ti:S) crystals is a critical factor that limits the energy achievable with the chirped-pulse amplification (CPA) technique. We propose a method to suppress PL effects in large-aperture Ti:S amplifiers by using a temporal dual-pulse pump. Theoretical simulations based on the experimental parameters in 2.0 PW Ti:S laser system are performed to predict the transverse gain as a function of pumping time and output energy. By optimizing the temporal profile of the pump beam as well as the time delay between the input seed and pump pulses, we can minimize PL effects in Ti:S crystals. This method is applicable to larger-aperture Ti:S crystals pumped at higher pump fluence and energy, and is potential to develop a ~10 PW laser system.
机译:大孔径Ti:蓝宝石(Ti:S)晶体中的横向寄生激光(PL)是限制limits脉冲放大(CPA)技术可获得的能量的关键因素。我们提出了一种通过使用时间双脉冲泵来抑制大口径Ti:S放大器中的PL效应的方法。基于2.0 PW Ti:S激光系统中的实验参数进行了理论模拟,以预测横向增益随泵浦时间和输出能量的变化。通过优化泵浦光束的时间分布以及输入种子和泵浦脉冲之间的时间延迟,我们可以最大程度地降低Ti:S晶体中的PL效应。该方法适用于以较高的泵浦注量和能量泵浦的大口径Ti:S晶体,并且有可能开发约10 PW的激光系统。

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