ARROW-Based Coherently Coupled Bending Waveguides
碩士 === 國立交通大學 === 電子工程系所 === 92 === In this research, we investigate the ARROW-based coherently coupled bending waveguides. The transfer matrix method and effective index method are used to analyze the rib-ARROW structures. The beam propagation method is used to simulate the propagation performance...
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ndltd-TW-092NCTU54270412015-10-13T13:04:40Z http://ndltd.ncl.edu.tw/handle/96676249692151364994 ARROW-Based Coherently Coupled Bending Waveguides 同調耦合彎折抗諧振反射光波導 Ming-Jung Tsai 蔡明融 碩士 國立交通大學 電子工程系所 92 In this research, we investigate the ARROW-based coherently coupled bending waveguides. The transfer matrix method and effective index method are used to analyze the rib-ARROW structures. The beam propagation method is used to simulate the propagation performance of the ARROW-based bending waveguides. Due to the adjustable characteristics of waveguide width and rib depth, we propose flexible bending devices based on rib-ARROW’s structures. When the total bending angles are designed as 27.2°, 36.8° and 91.2°, respectively, the corresponding waveguide widths are 5.0 mm, 4.0 mm and 4.0 mm, respectively. Furthermore, the corresponding device transmissions and device areas are 0.828 (0.82 dB), 0.746 (1.27 dB), 0.610 (2.15 dB) and 1.32 mm2, 1.24 mm2, 9.54 mm2, respectively. Yang-Tung Huang Cheng-May Kwei 黃遠東 桂正楣 2004 學位論文 ; thesis 68 zh-TW |
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碩士 === 國立交通大學 === 電子工程系所 === 92 === In this research, we investigate the ARROW-based coherently coupled bending waveguides. The transfer matrix method and effective index method are used to analyze the rib-ARROW structures. The beam propagation method is used to simulate the propagation performance of the ARROW-based bending waveguides. Due to the adjustable characteristics of waveguide width and rib depth, we propose flexible bending devices based on rib-ARROW’s structures. When the total bending angles are designed as 27.2°, 36.8° and 91.2°, respectively, the corresponding waveguide widths are 5.0 mm, 4.0 mm and 4.0 mm, respectively. Furthermore, the corresponding device transmissions and device areas are 0.828 (0.82 dB), 0.746 (1.27 dB), 0.610 (2.15 dB) and 1.32 mm2, 1.24 mm2, 9.54 mm2, respectively.
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Yang-Tung Huang |
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Yang-Tung Huang Ming-Jung Tsai 蔡明融 |
author |
Ming-Jung Tsai 蔡明融 |
spellingShingle |
Ming-Jung Tsai 蔡明融 ARROW-Based Coherently Coupled Bending Waveguides |
author_sort |
Ming-Jung Tsai |
title |
ARROW-Based Coherently Coupled Bending Waveguides |
title_short |
ARROW-Based Coherently Coupled Bending Waveguides |
title_full |
ARROW-Based Coherently Coupled Bending Waveguides |
title_fullStr |
ARROW-Based Coherently Coupled Bending Waveguides |
title_full_unstemmed |
ARROW-Based Coherently Coupled Bending Waveguides |
title_sort |
arrow-based coherently coupled bending waveguides |
publishDate |
2004 |
url |
http://ndltd.ncl.edu.tw/handle/96676249692151364994 |
work_keys_str_mv |
AT mingjungtsai arrowbasedcoherentlycoupledbendingwaveguides AT càimíngróng arrowbasedcoherentlycoupledbendingwaveguides AT mingjungtsai tóngdiàoǒuhéwānzhékàngxiézhènfǎnshèguāngbōdǎo AT càimíngróng tóngdiàoǒuhéwānzhékàngxiézhènfǎnshèguāngbōdǎo |
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1717729859490283520 |