论文标题

金属二式增强式上转换:逐渐“ MESO”

Metal-Dielectric-Enhanced Upconversion: Going "Meso"

论文作者

Rasskazov, Ilia L., Moroz, Alexander, Murphy, Catherine J., Krauss, Todd D., Carney, P. Scott

论文摘要

基于一个简单但反直觉的想法,即覆盖具有异常厚的金属纳米颗粒($ \ gtrsim 100 $ nm)高索引介质壳的新颖概念,该概念在技术上相关且很大程度上是Quiented of upConversion(UC)增强的案例。对于可用的材料组合和金属核心壳中腔的材料和几何参数,可以在腔表面实现$ \ gtrsim 10^6 $的UC增强的创纪录的高值。对于带有折射率指数$ n = 2.7 $的高指数介电壳内部的发射极,Lorentz本地场校正可以为UC的额外增强因子提供$ \ 92 $的额外增强因子,从而导致UC增强$ \ gtrsim 10^8 $,这是对单个物体的三个幅度。我们的中腔概念促进了等离激元和耳语画廊模式共振功能的有益协同作用,纳米级($ \ lyssim 100 $ nm)和显微镜($ \ gtrsim 1 $ $ $ m $ m)。

A novel concept of a \textit{mesocavity}, based on a simple yet counter-intuitive idea of covering metal nanoparticles with unusually thick ($\gtrsim 100$ nm) high-index dielectric shells, is demonstrated in technologically relevant and largely sought-after case of an upconversion (UC) enhancement. For readily available combinations of materials and geometrical parameters of metal-dielectric core-shell mesocavity, record high values of UC enhancement of $\gtrsim 10^6$ can be achieved on the cavity surface. For emitter inside the high-index dielectric shell with refractive index $n=2.7$, the Lorentz local-field correction can provide an additional enhancement factor for UC of $\approx 92$, resulting in UC enhancement of $\gtrsim 10^8$, which is three orders of magnitude larger than it has ever been reported for individual particles. Our mesocavity concept facilitates a beneficial synergy of plasmonic and whispering gallery-mode resonance functionalities within an intermediary region between nanoscale ($\lesssim 100$ nm) and microscale ($\gtrsim 1$ $μ$m).

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源