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Plasmonic nanosponges filled with silicon for enhanced white light emission

机译:电浆纳米海绵填充硅增强的白光发射

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摘要

Plasmonic nanosponges are a powerful platform for various nanophotonic applications owing to extremely high local field enhancement in metallic nanopores. The filling of the nanopores with high-refractive index semiconductors (e.g. Si, Ge, GaP, etc.) opens up opportunities for the enhancement of nonlinear effects in these materials. However, this task remains challenging due to the lack of knowledge on the integration process of metal and high-index semiconductor components in such nanoobjects. Here, we investigate metal-dielectric nanoparticles fabricated from bilayer Si/Au films by the laser printing technique via a combination of theoretical and experimental methods. We reveal that these hybrid nanoparticles represent the Au sponge-like nanostructure filled with Si nanocrystallites. We also demonstrate that the Au net provides strong near-field enhancement in the Si grains increasing the white light photoluminescence in the hybrid nanostructures compared to uniform Si nanoparticles. These results pave the way for engineering the internal structure of the sponge-like hybrid nanoparticles possessing white light luminescence and control of their optical properties on demand.
机译:电浆纳米海绵是一个强大的平台由于各种纳米光子应用程序极高的局部场增强金属纳米孔。high-refractive指数半导体(如。如果,通用电气、缺口等)带来了机会在这些增强的非线性影响材料。由于缺乏知识的集成金属和半导体高指数的过程在这种nanoobjects组件。研究金属电介质纳米颗粒制作从双层Si /非盟激光电影通过结合印刷技术理论和实验方法。这些混合纳米粒子代表非盟像海绵一样的奈米结构充满了Sinanocrystallites。网络提供了强大的近场增强如果颗粒增加了白光光致发光的混合纳米结构而统一的硅纳米粒子。结果为工程内部铺平道路像海绵一样的混合纳米粒子的结构拥有白光发光和控制的光学特性。

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