论文标题
宽带反反射与卤化物 - 玻璃盐质偏移
Broadband antireflection with halide-perovskite metasurfaces
论文作者
论文摘要
基于光学共振的介电纳米结构的元视力是一个具有许多潜在应用的迅速发展的研究领域。 Halide Perovskite Metasurfaces最近成为元访问的新型平台,它们为光电设备中的光控制提供了独特的机会。在这里,我们采用广义的kerker条件在mapbbr3 perovskite metasurface的每种元原子中重叠电和磁性miE共振,并证明宽带抑制反射降至4%。我们还揭示了元表纳米结构也有助于增强光致发光。我们的结果可能对在光伏和半透明的多功能METADEVICES中的纳米结构卤化物钙钛矿的应用可能很有用,在这些MetadeVices中,降低反射对它们的效率很重要。
Meta-optics based on optically-resonant dielectric nanostructures is a rapidly developing research field with many potential applications. Halide perovskite metasurfaces emerged recently as a novel platform for meta-optics, and they offer unique opportunities for control of light in optoelectronic devices. Here we employ the generalized Kerker conditions to overlap electric and magnetic Mie resonances in each meta-atom of MAPbBr3 perovskite metasurface and demonstrate broadband suppression of reflection down to 4%. We reveal also that metasurface nanostructuring is also beneficial for the enhancement of photoluminescence. Our results may be useful for applications of nanostructured halide perovskites in photovoltaics and semi-transparent multifunctional metadevices where reflection reduction is important for their high efficiency.