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A birefringent phase-matching method in multilayered hyperbolic metamaterials

机译:多层双曲超材料中的双折射相位匹配方法

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Multilayered hyperbolic metamaterials (MHM) is proposed to create phase matching of fundamental-frequency (FF) and third-harmonic (TH) field components with a unique dispersion provided by the engineered MHM structure for third-harmonic generation in ultra-short pulse regime. In this work, we analytically study the ensuing possibilities and demonstrate that a birefringent phase-matching can be alternatively achieved with a wide range of involved material parameters and optimal engineering of MHM structure. When the phase-matched conditions is satisfied by birefringent phase-matching method, the growth rate of the TH intensity generating as a function of the nonlinear-optical interaction length to be obviously increased. This method opens new ways of improving the conversion efficiency of frequency tripling regardless of the coherence length in the bulk of a nonlinear material.
机译:提出了多层双曲超材料(MHM),以创建基频(FF)和三次谐波(TH)场分量的相位匹配,并通过工程化的HMHM结构提供独特的色散,以在超短脉冲条件下产生三次谐波。在这项工作中,我们分析性地研究了随之而来的可能性,并证明可以通过广泛涉及的材料参数和MHM结构的最佳工程来交替实现双折射相位匹配。当通过双折射相位匹配方法满足相位匹配条件时,作为非线性-光学相互作用长度的函数而产生的TH强度的增长率将明显增加。该方法为提高频率三重转换效率提供了新的途径,而与非线性材料主体中的相干长度无关。

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