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Nonlinear compression of high-power laser pulses: compression after compressor approach

机译:高功率激光脉冲的非线性压缩:压缩机接近后压缩

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摘要

The peak power of present-day lasers is limited by the pulse energy that the diffraction gratings of an optical compressor can withstand. A promising method to overcome this limitation is reviewed: the pulse power is increased by shortening its duration rather than increasing the pulse energy, the pulse being shortened after passing a compressor (Compression after Compressor Approach (CafCA)). For this purpose, the pulse spectrum is broadened as a result of self-phase modulation, and the pulse is then compressed by dispersion mirrors. Application of this idea, known since the 1960s, to lasers whose power is over 1 TW has been restrained until recently by a number of physical problems. These problems and possible methods to solve them are discussed in detail. The experimental results obtained over the past few years demonstrate the efficiency of the technique (compression by a factor of 5) in the range up to 250 TW. CafCA features three undisputed merits: simplicity and low cost, negligible loss of pulse energy, and applicability to any high-power laser.
机译:当天激光器的峰值功率受到光学压缩机的衍射光栅可以承受的脉冲能量的限制。综述了克服该限制的有希望的方法:通过缩短其持续时间而不是增加脉冲能量,脉冲功率增加,在通过压缩机后缩短(压缩机方法(CAFCA)的压缩后缩短脉冲。为此目的,由于自相位调制而宽泛扩大脉冲谱,然后通过分散镜压缩脉冲。在20世纪60年代以来,这个想法的应用,即最近通过许多身体问题抑制了权力超过1台的激光器。详细讨论了解决它们的这些问题和可能的方法。在过去几年中获得的实验结果证明了该技术的效率(压缩50倍),在高达250 Tw的范围内。 CAFCA具有三项无可争议的优点:简单性和低成本,损失脉冲能量损失,以及对任何高功率激光的适用性。

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