Modeling Method for Two-Dimensional Photonic Crystal Circuits
碩士 === 龍華科技大學 === 電機工程研究所 === 99 === THis thesis uses Fabry-Perot cavity model theory to study the square lattice structure for two-dimensional photonic crystal circuits. A dual 90゚bend waveguide cavity, a dual 45゚bend waveguide cavity, and a straight waveguide are modeled. Then by using simple nume...
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ndltd-TW-099LHU054420042015-10-13T20:46:53Z http://ndltd.ncl.edu.tw/handle/56773604288449916044 Modeling Method for Two-Dimensional Photonic Crystal Circuits 二維光子晶體線路模型 Jyun-wei Shih 施俊偉 碩士 龍華科技大學 電機工程研究所 99 THis thesis uses Fabry-Perot cavity model theory to study the square lattice structure for two-dimensional photonic crystal circuits. A dual 90゚bend waveguide cavity, a dual 45゚bend waveguide cavity, and a straight waveguide are modeled. Then by using simple numerical calculation, the results can be quickly obtained, and the results are in good agreement with those simulated by finite-difference-time-domain simulation method. In the analysis, finite-difference-time-domain method is used to analyze the spectram response of structure, and then calculate the corresponding resonance frequency. Applying Fabry-Perot resonator principle, the proposed numerical model is derived. Then the spectral response of the dual 45゚, dual 90゚and straight waveguide of different lengths can be estimated. Finally, results obtained by using the proposed model is compared with those obtained by FDTD method. The proposed two-dimensional photonic crystal circuit model can significantly reduce the simulation time with reasonable accuracy. As a result, the method is potentially useful for the study of to large-scale photonic crystal circuits. Yih-bin Lin 林義彬 2011 學位論文 ; thesis 68 zh-TW |
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碩士 === 龍華科技大學 === 電機工程研究所 === 99 === THis thesis uses Fabry-Perot cavity model theory to study the square lattice structure for two-dimensional photonic crystal circuits. A dual 90゚bend waveguide cavity, a dual 45゚bend waveguide cavity, and a straight waveguide are modeled. Then by using simple numerical calculation, the results can be quickly obtained, and the results are in good agreement with those simulated by finite-difference-time-domain simulation method.
In the analysis, finite-difference-time-domain method is used to analyze the spectram response of structure, and then calculate the corresponding resonance frequency. Applying Fabry-Perot resonator principle, the proposed numerical model is derived. Then the spectral response of the dual 45゚, dual 90゚and straight waveguide of different lengths can be estimated. Finally, results obtained by using the proposed model is compared with those obtained by FDTD method.
The proposed two-dimensional photonic crystal circuit model can significantly reduce the simulation time with reasonable accuracy. As a result, the method is potentially useful for the study of to large-scale photonic crystal circuits.
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author2 |
Yih-bin Lin |
author_facet |
Yih-bin Lin Jyun-wei Shih 施俊偉 |
author |
Jyun-wei Shih 施俊偉 |
spellingShingle |
Jyun-wei Shih 施俊偉 Modeling Method for Two-Dimensional Photonic Crystal Circuits |
author_sort |
Jyun-wei Shih |
title |
Modeling Method for Two-Dimensional Photonic Crystal Circuits |
title_short |
Modeling Method for Two-Dimensional Photonic Crystal Circuits |
title_full |
Modeling Method for Two-Dimensional Photonic Crystal Circuits |
title_fullStr |
Modeling Method for Two-Dimensional Photonic Crystal Circuits |
title_full_unstemmed |
Modeling Method for Two-Dimensional Photonic Crystal Circuits |
title_sort |
modeling method for two-dimensional photonic crystal circuits |
publishDate |
2011 |
url |
http://ndltd.ncl.edu.tw/handle/56773604288449916044 |
work_keys_str_mv |
AT jyunweishih modelingmethodfortwodimensionalphotoniccrystalcircuits AT shījùnwěi modelingmethodfortwodimensionalphotoniccrystalcircuits AT jyunweishih èrwéiguāngzijīngtǐxiànlùmóxíng AT shījùnwěi èrwéiguāngzijīngtǐxiànlùmóxíng |
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1718050274569879552 |