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First principles selection and design of mid-IR nonlinear optical halide crystals

机译:中外IR非线性光学卤化物晶体的第一原理选择与设计

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摘要

The optical properties of several distinct series of nonlinear optical (NLO) halide crystals with potential applications in the mid-infrared (mid-IR) spectral region have been investigated systematically using a first-principles computational methodology. The crystals have different NLO-active units [MX_k] (M = center cation, X = halide anion, and k = 6, 4, 3 or 2) and by combining atomic-level analysis with optical design considerations, their prospects for mid-IR applications are evaluated. The preferred microscopic structural units, which result in a relatively large NLO response and high laser damage threshold, are proposed. The study provides first principles guidance in the selection and design of novel halide crystals for mid-IR NLO applications.
机译:使用第一原理计算方法系统地研究了多种不同的非线性光学(NLO)卤化物晶体的几个不同的非线性光学(NLO)卤化物晶体的光学性质,并且已经通过第一原理进行了计算方法。 晶体具有不同的NLO-活性单元[MX_K](M =中心阳离子,X =卤化物阴离子,K = 6,4,3或2),并通过将原子级分析与光学设计考虑相结合,它们的中期前景 IR应用程序进行了评估。 提出了优选的微观结构单元,其导致相对较大的NLO响应和高激光损伤阈值。 该研究提供了第一原理在IR NLO应用中选择和设计方面的指导。

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