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Phase-matched third-harmonic generation via doubly resonant optical surface modes in 1D photonic crystals

机译:通过一维光子晶体中的双共振光学表面模式产生相位匹配的三次谐波

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摘要

Efficient nonlinear conversion requires that interacting optical waves maintain a consistent phase relationship when traveling in a medium despite its dispersion. Birefringent phase-matching, which is often used to compensate for the dispersion, is not applicable to optically isotropic nonlinear materials. Here, we present a one-dimensional photonic crystal structure that allows the propagation of optical surface waves, both at the fundamental and third-harmonic frequencies, as an efficient medium for phase-matched third-harmonic generation. A unique advantage of this structure is that the effective refractive indices for the surface waves are similar to the refractive index of air at both frequencies. This allows phase-matching between the first and third harmonics, and a visible collinear beam of the third harmonic is produced at the prism-coupled output. Moreover, these optical surface waves propagate over long distances even if a lossy nonlinear nanofilm is deposited onto the photonic crystal surface. We provide experimental results for third-harmonic generation at a wavelength of 410 nm for a bare dielectric Ta2O5/SiO2 multilayer structure and for the same structure coated with a 15-nm GaAs film.
机译:有效的非线性转换要求相互作用的光波在介质中传播时,尽管其色散也要保持一致的相位关系。常用于补偿色散的双折射相位匹配不适用于光学各向同性的非线性材料。在这里,我们提出一种一维光子晶体结构,该结构允许在基波和三次谐波频率上传播光学表面波,作为产生相匹配三次谐波的有效介质。这种结构的独特优势在于,在两个频率下,表面波的有效折射率都类似于空气的折射率。这允许在第一和第三谐波之间进行相位匹配,并且在棱镜耦合的输出端产生可见的三次谐波共线光束。而且,即使有损的非线性纳米膜沉积在光子晶体表面上,这些光学表面波也能长距离传播。对于裸介电的Ta2O5 / SiO2多层结构以及涂有15nm GaAs膜的相同结构,我们提供了在410 nm波长下三次谐波产生的实验结果。

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