Tunable Optical Resonators by Manipulating Polystyrene Microspheres through Dielectrophoretic Force at Inhomogeneous Structures

碩士 === 國立清華大學 === 光電工程研究所 === 103 === The main theme of this research is to implement a tunable microsphere resonator platform with an ability of manipulating the coupling distance between a polystyrene microsphere (resonant cavity) and a rib waveguide through a controllable dielectrophoretic (DEP)...

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Main Authors: Liao, T.J., 廖則幀
Other Authors: Lee, M. C.
Format: Others
Language:zh-TW
Published: 2014
Online Access:http://ndltd.ncl.edu.tw/handle/03113307806856473838
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spelling ndltd-TW-103NTHU51240072017-02-25T04:18:29Z http://ndltd.ncl.edu.tw/handle/03113307806856473838 Tunable Optical Resonators by Manipulating Polystyrene Microspheres through Dielectrophoretic Force at Inhomogeneous Structures 利用非均質結構產生之介電泳力操控聚苯乙烯微球作為可調式光學共振腔 Liao, T.J. 廖則幀 碩士 國立清華大學 光電工程研究所 103 The main theme of this research is to implement a tunable microsphere resonator platform with an ability of manipulating the coupling distance between a polystyrene microsphere (resonant cavity) and a rib waveguide through a controllable dielectrophoretic (DEP) force on an inhomogeneous structure. The microsphere is suspended in liquid sealed in between two transparent conductive plates. One is coated with amorphous Si and the other is with an SU-8 waveguide structure. First, we use the image-controlled dielectrophoresis for moving the microsphere near the rib waveguide; then, the microsphere will be attracted by the rib and stop in the center of the rib waveguide by a localized DEP on the inhomogeneous structure (rib edge). By changing the applied voltage, the coupling distance between the microsphere and the single-mode rib waveguide is continuously adjustable. Through measuring the waveguide transmittance spectra at different biased voltages across the top and bottom plate, the PSB microsphere is able to be operated either at the over-coupling, near critical-coupling or under-coupling condition. The intrinsic quality factor is estimated to be 26707. Lee, M. C. 李明昌 2014 學位論文 ; thesis 61 zh-TW
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language zh-TW
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description 碩士 === 國立清華大學 === 光電工程研究所 === 103 === The main theme of this research is to implement a tunable microsphere resonator platform with an ability of manipulating the coupling distance between a polystyrene microsphere (resonant cavity) and a rib waveguide through a controllable dielectrophoretic (DEP) force on an inhomogeneous structure. The microsphere is suspended in liquid sealed in between two transparent conductive plates. One is coated with amorphous Si and the other is with an SU-8 waveguide structure. First, we use the image-controlled dielectrophoresis for moving the microsphere near the rib waveguide; then, the microsphere will be attracted by the rib and stop in the center of the rib waveguide by a localized DEP on the inhomogeneous structure (rib edge). By changing the applied voltage, the coupling distance between the microsphere and the single-mode rib waveguide is continuously adjustable. Through measuring the waveguide transmittance spectra at different biased voltages across the top and bottom plate, the PSB microsphere is able to be operated either at the over-coupling, near critical-coupling or under-coupling condition. The intrinsic quality factor is estimated to be 26707.
author2 Lee, M. C.
author_facet Lee, M. C.
Liao, T.J.
廖則幀
author Liao, T.J.
廖則幀
spellingShingle Liao, T.J.
廖則幀
Tunable Optical Resonators by Manipulating Polystyrene Microspheres through Dielectrophoretic Force at Inhomogeneous Structures
author_sort Liao, T.J.
title Tunable Optical Resonators by Manipulating Polystyrene Microspheres through Dielectrophoretic Force at Inhomogeneous Structures
title_short Tunable Optical Resonators by Manipulating Polystyrene Microspheres through Dielectrophoretic Force at Inhomogeneous Structures
title_full Tunable Optical Resonators by Manipulating Polystyrene Microspheres through Dielectrophoretic Force at Inhomogeneous Structures
title_fullStr Tunable Optical Resonators by Manipulating Polystyrene Microspheres through Dielectrophoretic Force at Inhomogeneous Structures
title_full_unstemmed Tunable Optical Resonators by Manipulating Polystyrene Microspheres through Dielectrophoretic Force at Inhomogeneous Structures
title_sort tunable optical resonators by manipulating polystyrene microspheres through dielectrophoretic force at inhomogeneous structures
publishDate 2014
url http://ndltd.ncl.edu.tw/handle/03113307806856473838
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