Applying multimode interference couplers in ring resonators
碩士 === 國立中山大學 === 光電工程學系研究所 === 97 === This study uses vertical mirror optical waveguide reflector and bending waveguide to fabricate semiconductor ring resonators. By using multimode interference couplers with specific width and length that generate distinctive energy distribution to achieve the po...
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ndltd-TW-097NSYS51240632019-05-29T03:42:53Z http://ndltd.ncl.edu.tw/handle/c7td6e Applying multimode interference couplers in ring resonators 應用多模干涉耦合之環形共振器 Yi-Lin Tsai 蔡宜霖 碩士 國立中山大學 光電工程學系研究所 97 This study uses vertical mirror optical waveguide reflector and bending waveguide to fabricate semiconductor ring resonators. By using multimode interference couplers with specific width and length that generate distinctive energy distribution to achieve the power splitting of 85:15. We integrate vertically deep etching turning mirror to reflect optical mode, and reduce the component size to 37.6%. In fabrication process, this study applies multiple wet etching technique to form the waveguide structure. First, we use wet etching technique to etch ridge waveguide and turning mirror, and then perform deep etching in the periphery of bending and turning region to reduce the bending loss. Finally, the etching mask is lifted off, and the wafer is polished and sliced for measurement. After measuring the signal, we can compute waveguide loss by Fabry-perot resonant situation. The waveguide loss is 59.6dB/cm. Power splitting of 90:10 is achieved. The free spectral range (FSR) is 72GHz for the ring resonators. Tsong-Sheng Lay 賴聰賢 2009 學位論文 ; thesis 57 zh-TW |
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碩士 === 國立中山大學 === 光電工程學系研究所 === 97 === This study uses vertical mirror optical waveguide reflector and bending waveguide to fabricate semiconductor ring resonators. By using multimode interference couplers with specific width and length that
generate distinctive energy distribution to achieve the power splitting of 85:15. We integrate vertically deep etching turning mirror to reflect optical mode, and reduce the component size to 37.6%.
In fabrication process, this study applies multiple wet etching technique to form the waveguide structure. First, we use wet etching technique to etch ridge waveguide and turning mirror, and then perform deep etching in the periphery of bending and turning region to reduce the
bending loss. Finally, the etching mask is lifted off, and the wafer is polished and sliced for measurement.
After measuring the signal, we can compute waveguide loss by Fabry-perot resonant situation. The waveguide loss is 59.6dB/cm. Power splitting of 90:10 is achieved. The free spectral range (FSR) is 72GHz for the ring resonators.
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Tsong-Sheng Lay |
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Tsong-Sheng Lay Yi-Lin Tsai 蔡宜霖 |
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Yi-Lin Tsai 蔡宜霖 |
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Yi-Lin Tsai 蔡宜霖 Applying multimode interference couplers in ring resonators |
author_sort |
Yi-Lin Tsai |
title |
Applying multimode interference couplers in ring resonators |
title_short |
Applying multimode interference couplers in ring resonators |
title_full |
Applying multimode interference couplers in ring resonators |
title_fullStr |
Applying multimode interference couplers in ring resonators |
title_full_unstemmed |
Applying multimode interference couplers in ring resonators |
title_sort |
applying multimode interference couplers in ring resonators |
publishDate |
2009 |
url |
http://ndltd.ncl.edu.tw/handle/c7td6e |
work_keys_str_mv |
AT yilintsai applyingmultimodeinterferencecouplersinringresonators AT càiyílín applyingmultimodeinterferencecouplersinringresonators AT yilintsai yīngyòngduōmógànshèǒuhézhīhuánxínggòngzhènqì AT càiyílín yīngyòngduōmógànshèǒuhézhīhuánxínggòngzhènqì |
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