Plane-Wave Expansion Method for Calculating Slow light Effefct of Photonic Crystals Waveguide
碩士 === 國立臺灣大學 === 光電工程學研究所 === 94 === In the thesis, a plane-wave expansion method for alculating the band structure of the photonic crystal is presented. As we known, photonic crystal structures provide a promising tool to control of the flow electromagnetic(EM) waves in the integrated optical devi...
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ndltd-TW-094NTU051240682015-12-16T04:38:40Z http://ndltd.ncl.edu.tw/handle/07123098237359227077 Plane-Wave Expansion Method for Calculating Slow light Effefct of Photonic Crystals Waveguide 利用平面波展開法模擬光子晶體波導之慢光效果 Wen-Lan Yeh 葉文嵐 碩士 國立臺灣大學 光電工程學研究所 94 In the thesis, a plane-wave expansion method for alculating the band structure of the photonic crystal is presented. As we known, photonic crystal structures provide a promising tool to control of the flow electromagnetic(EM) waves in the integrated optical devices. Therefore, there is a growing interest in developing photonic crystal-based waveguide components which can guide EM waves either along a line defect (a row of missing rods) or through coupled cavities. In the latter case, which we called coupled-cavity waveguides (CCW), the EM waves were tightly confined at each defect site, and photons can propagate by hopping, due to interactions between the neighboring evanescent cavity modes. It is observed that photon lifetime increases drastically and group velocity of photons tends towards zero at the waveguiding band edges of the periodic coupled cavities. In the photonic crystal CCW, low group velocity of light can result from localized modes in the defect. An analogy between Schrodinger''s equation and Maxwell''s equations allows us to use tight-binding (TB) approximation which was originally developed for electronic systems. Yih-Peng Chiou 邱奕鵬 2006 學位論文 ; thesis 65 zh-TW |
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碩士 === 國立臺灣大學 === 光電工程學研究所 === 94 === In the thesis, a plane-wave expansion method for alculating the band structure of the photonic crystal is presented. As we known, photonic crystal structures provide a promising tool to control of the flow electromagnetic(EM) waves in the integrated optical devices. Therefore, there is a growing interest in developing photonic crystal-based waveguide components which can guide EM waves either along a line defect (a row of missing rods) or through coupled cavities. In the latter case, which we called coupled-cavity waveguides (CCW), the EM waves were tightly confined at each defect site, and photons can propagate by hopping, due to interactions between the neighboring evanescent cavity modes. It is observed that photon lifetime increases drastically and group velocity of photons tends towards zero at the waveguiding band edges of the periodic coupled cavities. In the photonic crystal CCW, low group velocity of light can result from localized modes in the defect. An analogy between Schrodinger''s equation and Maxwell''s equations allows us to use tight-binding (TB) approximation which was originally developed for electronic systems.
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author2 |
Yih-Peng Chiou |
author_facet |
Yih-Peng Chiou Wen-Lan Yeh 葉文嵐 |
author |
Wen-Lan Yeh 葉文嵐 |
spellingShingle |
Wen-Lan Yeh 葉文嵐 Plane-Wave Expansion Method for Calculating Slow light Effefct of Photonic Crystals Waveguide |
author_sort |
Wen-Lan Yeh |
title |
Plane-Wave Expansion Method for Calculating Slow light Effefct of Photonic Crystals Waveguide |
title_short |
Plane-Wave Expansion Method for Calculating Slow light Effefct of Photonic Crystals Waveguide |
title_full |
Plane-Wave Expansion Method for Calculating Slow light Effefct of Photonic Crystals Waveguide |
title_fullStr |
Plane-Wave Expansion Method for Calculating Slow light Effefct of Photonic Crystals Waveguide |
title_full_unstemmed |
Plane-Wave Expansion Method for Calculating Slow light Effefct of Photonic Crystals Waveguide |
title_sort |
plane-wave expansion method for calculating slow light effefct of photonic crystals waveguide |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/07123098237359227077 |
work_keys_str_mv |
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