Dynamic Fano Resonance in Thin Fiber Taper Coupled Cylindrical Microcavity

Fano resonance results from interference between a background and a resonant scattering, which produces the asymmetrical lineshape. A cylindrical microcavity naturally possesses localized whispering gallery mode (WGM) and delocalized radiation mode, and a thin fiber taper can excite these two modes...

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Main Authors: Yadong Miao, Yunchong Peng, Yu Xiang, Mi Li, Yu Lu, Yuejiang Song
Format: Article
Language:English
Published: IEEE 2016-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/7747475/
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author Yadong Miao
Yunchong Peng
Yu Xiang
Mi Li
Yu Lu
Yuejiang Song
author_facet Yadong Miao
Yunchong Peng
Yu Xiang
Mi Li
Yu Lu
Yuejiang Song
author_sort Yadong Miao
collection DOAJ
description Fano resonance results from interference between a background and a resonant scattering, which produces the asymmetrical lineshape. A cylindrical microcavity naturally possesses localized whispering gallery mode (WGM) and delocalized radiation mode, and a thin fiber taper can excite these two modes simultaneously. The localized WGM can interfere with the weak delocalized background to generate Fano resonance in the thin fiber taper coupled cylindrical microcavity. In addition, the Fano parameter can be adjusted by changing the gap between fiber taper and microcylinder cavity or the coupling diameter of fiber taper. The experimental results agree well with the quantum scattering theory.
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spelling doaj.art-d71ac4cf288948f49df145d183b63f622022-12-21T22:22:52ZengIEEEIEEE Photonics Journal1943-06552016-01-01861610.1109/JPHOT.2016.26303167747475Dynamic Fano Resonance in Thin Fiber Taper Coupled Cylindrical MicrocavityYadong Miao0Yunchong Peng1Yu Xiang2Mi Li3Yu Lu4Yuejiang Song5Institute of Optical Communication Engineering, Nanjing University, Jiangsu, ChinaInstitute of Optical Communication Engineering, Nanjing University, Jiangsu, ChinaInstitute of Optical Communication Engineering, Nanjing University, Jiangsu, ChinaInstitute of Optical Communication Engineering, Nanjing University, Jiangsu, ChinaInstitute of Optical Communication Engineering, Nanjing University, Jiangsu, ChinaInstitute of Optical Communication Engineering, Nanjing University, Jiangsu, ChinaFano resonance results from interference between a background and a resonant scattering, which produces the asymmetrical lineshape. A cylindrical microcavity naturally possesses localized whispering gallery mode (WGM) and delocalized radiation mode, and a thin fiber taper can excite these two modes simultaneously. The localized WGM can interfere with the weak delocalized background to generate Fano resonance in the thin fiber taper coupled cylindrical microcavity. In addition, the Fano parameter can be adjusted by changing the gap between fiber taper and microcylinder cavity or the coupling diameter of fiber taper. The experimental results agree well with the quantum scattering theory.https://ieeexplore.ieee.org/document/7747475/MicrocavityFano resonanceradiation modewhispering gallery mode (WGM)thin fiber taper
spellingShingle Yadong Miao
Yunchong Peng
Yu Xiang
Mi Li
Yu Lu
Yuejiang Song
Dynamic Fano Resonance in Thin Fiber Taper Coupled Cylindrical Microcavity
IEEE Photonics Journal
Microcavity
Fano resonance
radiation mode
whispering gallery mode (WGM)
thin fiber taper
title Dynamic Fano Resonance in Thin Fiber Taper Coupled Cylindrical Microcavity
title_full Dynamic Fano Resonance in Thin Fiber Taper Coupled Cylindrical Microcavity
title_fullStr Dynamic Fano Resonance in Thin Fiber Taper Coupled Cylindrical Microcavity
title_full_unstemmed Dynamic Fano Resonance in Thin Fiber Taper Coupled Cylindrical Microcavity
title_short Dynamic Fano Resonance in Thin Fiber Taper Coupled Cylindrical Microcavity
title_sort dynamic fano resonance in thin fiber taper coupled cylindrical microcavity
topic Microcavity
Fano resonance
radiation mode
whispering gallery mode (WGM)
thin fiber taper
url https://ieeexplore.ieee.org/document/7747475/
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AT yunchongpeng dynamicfanoresonanceinthinfibertapercoupledcylindricalmicrocavity
AT yuxiang dynamicfanoresonanceinthinfibertapercoupledcylindricalmicrocavity
AT mili dynamicfanoresonanceinthinfibertapercoupledcylindricalmicrocavity
AT yulu dynamicfanoresonanceinthinfibertapercoupledcylindricalmicrocavity
AT yuejiangsong dynamicfanoresonanceinthinfibertapercoupledcylindricalmicrocavity