Development of Indium Phosphide MEMS for tunable optical buffering
Development of Indium Phosphide MEMS for tunable optical buffering
We are developing a MEMS-based device that can produce continuously tunable delays of optical signals. The design is based on coupled dual suspended waveguides fabricated in Indium Phosphide. We report on simulation-based optimisation of optical and mechanical properties of the structure and on current progress in fabrication.
Podoliak, Nina
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Ng, Wing H.
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Stewart, Will
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Liu, Huiyun
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Kenyon, Anthony J.
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Horak, Peter
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July 2015
Podoliak, Nina
0908b951-00a7-48a5-bc82-631640910b9c
Ng, Wing H.
0cae4e04-109c-48ea-96d2-1600f0710b66
Stewart, Will
bbe93aab-9477-4f08-9042-a0c453aeb7a5
Liu, Huiyun
ed01636f-0728-4d76-87ee-08b93635b2aa
Kenyon, Anthony J.
1e816a53-7f8f-4a52-b140-46d7431c64af
Horak, Peter
520489b5-ccc7-4d29-bb30-c1e36436ea03
Podoliak, Nina, Ng, Wing H., Stewart, Will, Liu, Huiyun, Kenyon, Anthony J. and Horak, Peter
(2015)
Development of Indium Phosphide MEMS for tunable optical buffering.
17th International Conference on Transparent Optical Networks (ICTON '15), Budapest, Hungary.
05 - 09 Jul 2015.
Record type:
Conference or Workshop Item
(Paper)
Abstract
We are developing a MEMS-based device that can produce continuously tunable delays of optical signals. The design is based on coupled dual suspended waveguides fabricated in Indium Phosphide. We report on simulation-based optimisation of optical and mechanical properties of the structure and on current progress in fabrication.
More information
Published date: July 2015
Venue - Dates:
17th International Conference on Transparent Optical Networks (ICTON '15), Budapest, Hungary, 2015-07-05 - 2015-07-09
Organisations:
Optoelectronics Research Centre, Quantum, Light & Matter Group
Identifiers
Local EPrints ID: 379222
URI: http://eprints.soton.ac.uk/id/eprint/379222
PURE UUID: f7244f8e-a234-4609-9f5b-bd231c93eaa2
Catalogue record
Date deposited: 23 Jul 2015 13:06
Last modified: 15 Mar 2024 03:36
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Contributors
Author:
Nina Podoliak
Author:
Wing H. Ng
Author:
Will Stewart
Author:
Huiyun Liu
Author:
Anthony J. Kenyon
Author:
Peter Horak
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