论文标题
宽带MIE驱动的随机准阶段匹配
Broadband Mie-driven random quasi-phase-matching
论文作者
论文摘要
没有反转对称性的高质量晶体是通过三波混合实现光频率转换的常规平台。在散装晶体中,有效的波浪混合依赖于相匹配的配置,而在微观和纳米尺度上,它需要增强非线性光 - 互动的谐振机制。这些策略通常会导致特定于波长的性能和窄带应用。由光学非线性晶体的随机组装组成的无序光子材料可以在随机的准阶段匹配(RQPM)制度中实现宽带可调性,不需要高质量的材料。在这里,我们通过在自下而上的钛酸钡纳米晶体组装中实现的几微米的MIE谐音球中实现RQPM来结合共振和障碍。测得的第二次谐波产生(SHG)揭示了宽带和共振波混合的组合,其中MIE共振驱动并增强了SHG,而该疾病使相匹配条件保持放松。可以通过在SHG复合平面中随机步行来描述这种新的相匹配状态,该平面的步长取决于微球体内的局部场的增强。我们的纳米晶体组件为在微尺度上定制相匹配的新机会,超出了散装晶体的连贯长度。它们可以适应以实现从近硫酸盐到红外范围的频率转换,它们是低成本且可扩展到大型表面积的。
High-quality crystals without inversion symmetry are the conventional platform to achieve optical frequency conversion via three wave-mixing. In bulk crystals, efficient wave-mixing relies on phase-matching configurations, while at the micro- and nano-scale it requires resonant mechanisms that enhance the nonlinear light-matter interaction. These strategies commonly result in wavelength-specific performances and narrowband applications. Disordered photonic materials, made up of a random assembly of optical nonlinear crystals, enable a broadband tunability in the random quasi-phase-matching (RQPM) regime and do not require high-quality materials. Here, we combine resonances and disorder by implementing RQPM in Mie-resonant spheres of a few microns realized by the bottom-up assembly of barium titanate nano-crystals. The measured second harmonic generation (SHG) reveals a combination of broadband and resonant wave mixing, in which Mie resonances drive and enhance the SHG, while the disorder keeps the phase-matching conditions relaxed. This new phase-matching regime can be described by a random walk in the SHG complex plane whose step lengths depend on the local field enhancement within the micro-sphere. Our nano-crystals assemblies provide new opportunities for tailored phase-matching at the micro-scale, beyond the coherence length of the bulk crystal. They can be adapted to achieve frequency conversion from the near-ultraviolet to the infrared ranges, they are low-cost and scalable to large surface areas.