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Analysis of nonlinear self-focusing phenomenon in high-power laser system based on ray-tracing

机译:基于光线跟踪的大功率激光系统非线性自聚焦现象分析

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摘要

In high power laser systems, nonlinear effect, one of the key factors of beam wavefront aberration and even irreversible damage to system, has always been one of the top considerations of researchers for decades. A hybrid ray-tracing method for both linear media and nonlinear media based on geometric optics is presented in this paper and realized by programming. In a simple optic system with KDP crystal, an obvious decline of beam quality is observed in high laser power density conditions and a method taking component intervals as compensation of beam quality is proved feasible. Considering the complexity of traditional modeling method based on surfaces, a modeling method based on components is established. Hopefully, the conclusions and flaws of this paper can shed light on relevant work and further research.
机译:在大功率激光系统中,非线性效应是光束波前像差甚至对系统造成不可逆损坏的关键因素之一,几十年来一直是研究人员的首要考虑之一。提出了一种基于几何光学的线性介质和非线性介质混合射线追踪方法,并通过编程实现。在具有KDP晶体的简单光学系统中,在高激光功率密度条件下观察到光束质量明显下降,并且证明了一种以分量间隔作为光束质量补偿的方法是可行的。考虑到传统的基于曲面的建模方法的复杂性,建立了基于构件的建模方法。希望本文的结论和缺陷可以为相关工作和进一步研究提供启示。

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