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Nonlinear diffraction in enhanced second-harmonic generation from 3D opal-Si and opal-GaN photonic crystals

机译:3D蛋白石-Si和蛋白石-GaN光子晶体在增强二次谐波生成中的非线性衍射

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摘要

Realization of enhancement of second-harmonic generation (SHG) in three-dimensional (3D) photonic crystals utilizing nonlinear diffraction is demonstrated. The samples are composed from close-packed silicon oxide spheres with diameter of 250 to 300 nm in each sample forming an ordered fcc opal matrix. The opal voids are filled by noncentrosymmetric gallium nitride and centrosymmetric silicon with filling factor close to unit. The photonic band gap (PBG) is obtained for light reflected from the (111) face and localized in the spectral region from 800 to 950 nm for different samples. SHG spectra show pronounced peaks as the fundamental radiation is tuned across the photonic band gap. The intensity enhancement in SHG is about 100 and the spectral width of the SHG resonances is approximately 15 nm. The SHG enhancement is attributed to combination of linear diffraction of the fundamental radiation from the (111) opal layers and nonlinear diffraction utilizing the 3D periodicity of the quadratic susceptibility of silicon and gallium nitride nanocrystals in opal voids. The spectral position of the SHG peak is slightly red-shifted in comparison with the PBG center and attributed to condition of the group velocity minima.
机译:演示了利用非线性衍射增强三维(3D)光子晶体中二次谐波生成(SHG)的实现。样品由直径250至300 nm的密堆积氧化硅球组成,每个样品中形成有序的fcc蛋白石基质。蛋白石空隙由非中心对称氮化镓和中心对称硅填充,填充因子接近单位。对于从(111)面反射并针对不同样本位于800至950 nm的光谱区域中的光,获得了光子带隙(PBG)。当在整个光子带隙上调谐基本辐射时,SHG光谱显示出明显的峰。 SHG的强度增强约为100,SHG共振的光谱宽度约为15 nm。 SHG增强归因于来自(111)蛋白石层的基本辐射的线性衍射和利用蛋白石空隙中硅和氮化镓纳米晶体的二次磁化率的3D周期性的非线性衍射的组合。与PBG中心相比,SHG峰的光谱位置略有红移,并且归因于群速度最小值的条件。

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