DocumentCode :
1759234
Title :
Analysis of Mode Coupling and Threshold Gain Control for Nanocircular Resonators Confined by Isolation and Metallic Layers
Author :
Qi-Feng Yao ; Yong-Zhen Huang ; Ling-Xiu Zou ; Xiao-Meng Lv ; Jian-Dong Lin ; Yue-De Yang
Author_Institution :
Inst. of Semicond., Beijing, China
Volume :
31
Issue :
5
fYear :
2013
fDate :
41334
Firstpage :
786
Lastpage :
792
Abstract :
Mode coupling and the control of mode Q factor and threshold gain are analyzed for nanocircular resonators confined by isolation and metallic layers based on solving eigenvalue equation for multiple-layer structure circular resonators. For nanocircular resonators only confined by a metallic layer, the metallic layer can enhance the mode confinement for transverse magnetic (TM) whispering-gallery modes (WGMs) and result in high Q TM WGMs. But transverse electric (TE) WGMs can form hybrid modes of surface plasmon polaritons and dielectric modes, with the mode Q factors limited by the metallic layer absorption. By introducing a low index isolation layer between the resonator and the metallic layer, we can greatly enhance the mode Q factors for TE WGMs. However, the mode coupling between different radial modes and the variation of the optical confinement factor in the active layer can result in the oscillation of the mode Q factor and threshold gain versus the isolation layer thickness. The optimization of the isolation layer thickness is important to enhance the mode Q factor and the optical confinement factor for realizing low threshold gain.
Keywords :
nanophotonics; optical multilayers; optical resonators; plasmonics; polaritons; surface plasmons; whispering gallery modes; Q-factor; dielectric modes; isolation layer; metallic layer; mode confinement; mode coupling; nanocircular resonator; optical confinement factor; surface plasmon polaritons; threshold gain control; transverse electric whispering gallery modes; transverse magnetic whispering gallery modes; Absorption; Couplings; Eigenvalues and eigenfunctions; Gold; Indexes; Optical resonators; Q factor; Mode $Q$ factor; TE and TM modes; nanocavity lasers; threshold gain;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2012.2234437
Filename :
6384631
Link To Document :
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