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高功率激光放大器中的调制不稳定性。

Modulation instability in high power laser amplifiers.

作者信息

Rubenchik Alexander M, Turitsyn Sergey K, Fedoruk Michail P

机构信息

Lawrence Livermore National Laboratory, Livermore, CA 94550, USA.

出版信息

Opt Express. 2010 Jan 18;18(2):1380-8. doi: 10.1364/OE.18.001380.

Abstract

The modulation instability (MI) is one of the main factors responsible for the degradation of beam quality in high-power laser systems. The so-called B-integral restriction is commonly used as the criteria for MI control in passive optics devices. For amplifiers the adiabatic model, assuming locally the Bespalov-Talanov expression for MI growth, is commonly used to estimate the destructive impact of the instability. We present here the exact solution of MI development in amplifiers. We determine the parameters which control the effect of MI in amplifiers and calculate the MI growth rate as a function of those parameters. The safety range of operational parameters is presented. The results of the exact calculations are compared with the adiabatic model, and the range of validity of the latest is determined. We demonstrate that for practical situations the adiabatic approximation noticeably overestimates MI. The additional margin of laser system design is quantified.

摘要

调制不稳定性(MI)是导致高功率激光系统光束质量下降的主要因素之一。所谓的B积分限制通常被用作无源光学器件中MI控制的标准。对于放大器,绝热模型通常用于估计不稳定性的破坏影响,该模型局部假设了用于MI增长的别斯帕罗夫 - 塔拉诺夫表达式。我们在此给出放大器中MI发展的精确解。我们确定控制放大器中MI效应的参数,并计算作为这些参数函数的MI增长率。给出了运行参数的安全范围。将精确计算结果与绝热模型进行比较,并确定绝热模型的有效范围。我们证明,在实际情况下,绝热近似明显高估了MI。对激光系统设计的额外裕量进行了量化。

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