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EXCITATION ENHANCEMENT AND EXTRACTION ENHANCEMENT WITH PHOTONIC CRYSTALS

机译:光子晶体的激发增强和萃取增强

摘要

Disclosed herein is a system for stimulating an emission from at least one emitter, such as a quantum dot or organic molecule, on the surface of a photonic crystal comprising a patterned dielectric substrate. Embodiments of this system include a laser or other source that illuminates the emitter and the photonic crystal, which is characterized by an energy band structure exhibiting a Fano resonance, from a first angle so as to stimulate the emission from the emitter at a second angle. The coupling between the photonic crystal and the emitter may result in spectral and angular enhancement of the emission through excitation and extraction enhancement. These enhancement mechanisms also reduce the emitter's lasing threshold. For instance, these enhancement mechanisms enable lasing of a 100 nm thick layer of diluted organic molecules solution with reduced threshold intensity. This reduction in lasing threshold enables more efficient organic light emitting devices and more sensitive molecular sensing.
机译:本文公开了一种用于刺激来自包括图案化的电介质衬底的光子晶体的表面上的至少一个发射器(诸如量子点或有机分子)的发射的系统。该系统的实施例包括激光器或其他源,其从第一角度照亮发射器和光子晶体,该光子晶体的特征在于表现出法诺共振的能带结构,从而以第二角度刺激来自发射器的发射。光子晶体与发射器之间的耦合可以通过激发和提取增强来导致发射的光谱和角度增强。这些增强机制还降低了发射器的发射阈值。例如,这些增强机制能够以降低的阈值强度发射100 nm厚的稀释有机分子溶液层。激射阈值的这种降低使得能够实现更有效的有机发光器件和更灵敏的分子感测。

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