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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Exploration of the correlation between weak absorption and thermal-stress for KDP and 70%-DKDP crystals
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Exploration of the correlation between weak absorption and thermal-stress for KDP and 70%-DKDP crystals

机译:KDP和70%-DKDP晶体弱吸收与热应力之间的相关性的探讨

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摘要

For KDP and 70%-DKDP crystals, knowledge of thermal-stress distribution induced by weak absorption effect is crucial for their applications, especially in high-power laser systems. Based on photo-thermal common-path interferometry (PCI) technique, the correlations of weak absorption effect with different crystal orientations were systematically evaluated at 1064 nm. An obviously anisotropic property is demonstrated, and a similar pattern of z > x > I > II is also represented for KDP and 70%-DKDP crystals. More importantly, crystal uniformity could be reflected by the weak absorption results, indicating that PCI method could be considered as a novel way to identify the crystal quality. Meanwhile, Thermal parameters including thermal expansion and thermal conductivity were obtained. Using the finite-element method (FEM), the temperature gradients and thermal-stresses along z and x-cut samples were distinctly explored, implying that the corresponding distributions are mainly attributed to crystal orientations. Importantly, another fundamental factor is confirmed that the variation of deuterium content could influence the behaviors of temperature gradients and thermal-stresses distributions. Thus, taking advantage of PCI and FEM as a new approach is more conducive to better understanding the mechanism of laser-matter interactions. (C) 2019 Elsevier B.V. All rights reserved.
机译:对于KDP和70%-DKDP晶体,弱吸收效应引起的热应力分布知识对于它们的应用至关重要,特别是在高功率激光系统中。基于光热公共路径干涉法(PCI)技术,在1064nm下系统地评估了不同晶体取向的弱吸收效应的相关性。证明了明显的各向异性特性,并且还针对KDP和70%-DKDP晶体表示类似的Z>×> I> II模式。更重要的是,晶体均匀性可以被弱吸收结果反射,表明PCI方法可以被认为是识别晶体质量的新方法。同时,获得了包括热膨胀和导热率的热参数。使用有限元方法(FEM),明显探索沿Z和X切割样品的温度梯度和热应力,这意味着相应的分布主要归因于晶体取向。重要的是,另一种基本因素被证实氘含量的变异可以影响温度梯度和热应力分布的行为。因此,利用PCI和FEM作为一种新方法,更有利于更好地理解激光物质相互作用的机制。 (c)2019 Elsevier B.v.保留所有权利。

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