Resonance quality, radiative/ohmic losses and modal volume of Mie plasmons

S. Derom, R. Vincent, A. Bouhelier, G. Colas des Francs
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引用次数: 30

Abstract

Molecular sytems are efficiently coupled to metal nanoparticles via the excitation of localized surface plasmons-polaritons (SPPs). The coupling strength between SPP and emitters can be estimated from the ratio Q/V where Q and V refer to the mode quality factor and effective volume, respectively. In this letter, we investigate in details the properties of Mie plasmons supported by a metallic nanosphere (Q-factor, radiative and ohmic losses, modal volume). We particularly focus on the difficulty to unambiguously define the modal volumes of localized SPPs. This leads us to propose two definitions; the first one is based on Purcell factor for a dipolar emitter in close proximity to the metallic nanoparticle and the second one is adapted from cavity quantum electrodynamics concept (cQED). This work brings simple hand tools to characterize the main properties of localized SPPs and will be helpful in designing optical nanosources. It also makes a bridge between cQED and quantum plasmonics.
Mie等离子体的共振质量、辐射/欧姆损耗和模态体积
分子系统通过局部表面等离子体-极化激子(SPPs)的激发与金属纳米粒子有效耦合。SPP与发射器之间的耦合强度可以通过比值Q/V来估计,其中Q和V分别代表模式质量因子和有效体积。在这封信中,我们详细研究了金属纳米球支持的Mie等离子体的性质(q因子,辐射和欧姆损失,模态体积)。我们特别关注难以明确定义局部spp的模态体积。这导致我们提出两个定义;第一个是基于靠近金属纳米粒子的偶极发射极的珀塞尔因子,第二个是根据腔量子电动力学概念(cQED)改编的。这项工作提供了简单的手工工具来表征局域化spp的主要特性,并将有助于设计光学纳米光源。它还在cQED和量子等离子体之间架起了一座桥梁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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