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具有周期性介质镜的双共振微腔中的二次谐波产生。

Second-harmonic generation in doubly resonant microcavities with periodic dielectric mirrors.

作者信息

Liscidini Marco, Claudio Andreani Lucio

机构信息

Dipartimento di Fisica A. Volta, Università di Pavia, via Bassi 6, 27100 Pavia, Italy.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Jan;73(1 Pt 2):016613. doi: 10.1103/PhysRevE.73.016613. Epub 2006 Jan 24.

DOI:10.1103/PhysRevE.73.016613
PMID:16486301
Abstract

Strong enhancement of second-harmonic generation (SHG) is expected in one-dimensional microcavities when double resonance for the pump and the harmonic fields, as well as phase matching, are achieved. The realization of a doubly resonant microcavity with dielectric mirrors made of nonbirefringent materials is difficult because of the refractive index dispersion of the constituent media. Here we present a powerful method, based on photonic crystal concepts like gap maps and their generalization to defect modes, for the design of doubly resonant microcavities with periodic dielectric mirrors. The material dispersion is compensated by using the angle of incidence as a tuning parameter, thanks to the polarization splitting of cavity modes. The cavity enhancement of SHG increases exponentially with the number of periods in the dielectric mirrors and can be much larger than in single-resonant microcavities with comparable (or even larger) quality factors. The roles of phase delay and of thin versus thick configurations in the dielectric mirrors, of the growth orientation, and of the polarization degrees of freedom in achieving double resonance with phase matching are discussed. Significant examples of doubly resonant SHG with high conversion efficiency are given for Al0.25Ga0.75As cavities with Al0.4Ga0.6As/Alox (oxidized AlAs) mirrors.

摘要

当泵浦场和谐波场实现双共振以及相位匹配时,预计在一维微腔中二次谐波产生(SHG)会得到强烈增强。由于构成介质的折射率色散,用非双折射材料制成的介质镜实现双共振微腔是困难的。在此,我们基于光子晶体概念(如能隙图及其对缺陷模式的推广)提出一种强大的方法,用于设计具有周期性介质镜的双共振微腔。由于腔模的偏振分裂,通过将入射角用作调谐参数来补偿材料色散。SHG的腔增强随着介质镜中周期数呈指数增加,并且可比具有相当(甚至更大)品质因数的单共振微腔大得多。讨论了相位延迟以及介质镜中薄与厚配置、生长取向和偏振自由度在实现具有相位匹配的双共振中的作用。给出了具有高转换效率的双共振SHG的重要示例,用于具有Al0.4Ga0.6As/Alox(氧化AlAs)镜的Al0.25Ga0.75As腔。

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