Hughes S
NTT Basic Research Laboratories, NTT Corporation, 3-1 Morinosato-Wakamiya, Atsugi, Kanagawa 243-0198, Japan.
Opt Lett. 2004 Nov 15;29(22):2659-61. doi: 10.1364/ol.29.002659.
A theoretical formalism is presented to investigate enhanced radiative decay of excited dipoles in photonic crystal waveguides and nanocavities with a view to achieving efficient single-photon emission from embedded quantum dots. Surprisingly, large enhancement effects are achievable in both waveguides and nanocavities, and enhanced emission in the waveguide is shown to scale proportionally (inversely) with the photon group index (velocity). Further, a way to include radiative coupling of the quantum dot is shown, and the importance of its inclusion is subsequently demonstrated.
提出了一种理论形式体系,用于研究光子晶体波导和纳米腔中激发偶极子的增强辐射衰变,以期实现嵌入量子点的高效单光子发射。令人惊讶的是,在波导和纳米腔中都可实现大的增强效应,并且波导中的增强发射与光子群指数(速度)成比例(反比)缩放。此外,展示了一种纳入量子点辐射耦合的方法,随后证明了纳入该耦合的重要性。