Mode-Expanded Bus Architecture for Non-Sensitive Waveguide Alignment in Vertically-Coupled Microring

We demonstrate experimentally a five-fold improvement in fabrication tolerance for vertically-coupled microrings using a mode-expanded bus waveguide. The power coupling coefficient is observed to vary by only 6% for misalignment as high as 1um.

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Main Authors: TEE, Chyng Wen, Williams, K. A., Penty, R. V., White, I. H., Hamacher, M., Troppenz, U., Heidrich, H.
Format: text
Language:English
Published: Institutional Knowledge at Singapore Management University 2006
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Online Access:https://ink.library.smu.edu.sg/lkcsb_research/3355
https://doi.org/10.1109/ECOC.2006.4801189
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spelling sg-smu-ink.lkcsb_research-43542019-01-09T08:18:39Z Mode-Expanded Bus Architecture for Non-Sensitive Waveguide Alignment in Vertically-Coupled Microring TEE, Chyng Wen Williams, K. A. Penty, R. V. White, I. H. Hamacher, M. Troppenz, U. Heidrich, H. We demonstrate experimentally a five-fold improvement in fabrication tolerance for vertically-coupled microrings using a mode-expanded bus waveguide. The power coupling coefficient is observed to vary by only 6% for misalignment as high as 1um. 2006-09-01T07:00:00Z text https://ink.library.smu.edu.sg/lkcsb_research/3355 info:doi/10.1109/ECOC.2006.4801189 https://doi.org/10.1109/ECOC.2006.4801189 Research Collection Lee Kong Chian School Of Business eng Institutional Knowledge at Singapore Management University Communication Networking & Broadcasting Components Circuits Devices & Systems Engineered Materials Dielectrics & Plasmas Photonics & Electro-Optics Signal Processing & Analysis Physical Sciences and Mathematics
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Communication
Networking & Broadcasting
Components
Circuits
Devices & Systems
Engineered Materials
Dielectrics & Plasmas
Photonics & Electro-Optics
Signal Processing & Analysis
Physical Sciences and Mathematics
spellingShingle Communication
Networking & Broadcasting
Components
Circuits
Devices & Systems
Engineered Materials
Dielectrics & Plasmas
Photonics & Electro-Optics
Signal Processing & Analysis
Physical Sciences and Mathematics
TEE, Chyng Wen
Williams, K. A.
Penty, R. V.
White, I. H.
Hamacher, M.
Troppenz, U.
Heidrich, H.
Mode-Expanded Bus Architecture for Non-Sensitive Waveguide Alignment in Vertically-Coupled Microring
description We demonstrate experimentally a five-fold improvement in fabrication tolerance for vertically-coupled microrings using a mode-expanded bus waveguide. The power coupling coefficient is observed to vary by only 6% for misalignment as high as 1um.
format text
author TEE, Chyng Wen
Williams, K. A.
Penty, R. V.
White, I. H.
Hamacher, M.
Troppenz, U.
Heidrich, H.
author_facet TEE, Chyng Wen
Williams, K. A.
Penty, R. V.
White, I. H.
Hamacher, M.
Troppenz, U.
Heidrich, H.
author_sort TEE, Chyng Wen
title Mode-Expanded Bus Architecture for Non-Sensitive Waveguide Alignment in Vertically-Coupled Microring
title_short Mode-Expanded Bus Architecture for Non-Sensitive Waveguide Alignment in Vertically-Coupled Microring
title_full Mode-Expanded Bus Architecture for Non-Sensitive Waveguide Alignment in Vertically-Coupled Microring
title_fullStr Mode-Expanded Bus Architecture for Non-Sensitive Waveguide Alignment in Vertically-Coupled Microring
title_full_unstemmed Mode-Expanded Bus Architecture for Non-Sensitive Waveguide Alignment in Vertically-Coupled Microring
title_sort mode-expanded bus architecture for non-sensitive waveguide alignment in vertically-coupled microring
publisher Institutional Knowledge at Singapore Management University
publishDate 2006
url https://ink.library.smu.edu.sg/lkcsb_research/3355
https://doi.org/10.1109/ECOC.2006.4801189
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