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具有损耗的光子晶体和等离子体晶体中的珀塞尔效应分析。

Analysis of the Purcell effect in photonic and plasmonic crystals with losses.

作者信息

Iwase Hideo, Englund Dirk, Vucković Jelena

机构信息

Ginzton Laboratory, Stanford University, California, 94305, USA.

出版信息

Opt Express. 2010 Aug 2;18(16):16546-60. doi: 10.1364/OE.18.016546.

Abstract

We study the spontaneous emission rate of emitter in a periodically patterned metal or dielectric membrane in the picture of a multimode field of damped Bloch states. For Bloch states in dielectric structures, the approach fully describes the Purcell effect in photonic crystal or spatially coupled cavities with losses. For a metal membrane, the Purcell factor depends on resistive loss at the resonant frequency of surface plasmon polariton (SPP). Analysis of an InP-Au-InP structure indicates that the SPP's Purcell effect can exceed a value of 50 in the ultraviolet. For a plasmonic crystal, we find a position-dependent Purcell enhancement with a mean value similar to the unpatterned membrane.

摘要

我们在阻尼布洛赫态的多模场图景中研究了周期性图案化金属或介电膜中发射器的自发发射率。对于介电结构中的布洛赫态,该方法充分描述了光子晶体或有损耗的空间耦合腔中的珀塞尔效应。对于金属膜,珀塞尔因子取决于表面等离激元极化激元(SPP)共振频率处的电阻损耗。对InP-Au-InP结构的分析表明,在紫外区域,SPP的珀塞尔效应可以超过50。对于等离激元晶体,我们发现了一种与位置有关的珀塞尔增强,其平均值与无图案的膜相似。

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