A novel thermooptic polymer switch based on directional coupler structure

A novel thermooptic (TO) polymer switch based on directional coupler structure is proposed for the first time. The key element of the proposed switch is a buried square core polymer waveguides which has been designed for optimum mode matching and coupling with the single mode optical fiber config...

Full description

Saved in:
Bibliographic Details
Main Authors: Khamis, Azme, Ismail, Zuhaimy, Haron, Khalid, Mohammed, Ahmad Tarmizi
Format: Article
Language:en
Published: Science Publications 2005
Subjects:
Online Access:http://eprints.utm.my/9973/1/AzmeKhamis2005_NonlinerGrowthModelsForModeling.pdf
http://eprints.utm.my/9973/
http://www.scipub.org/fulltext/jms2/jms213225-233.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1845472282184515584
author Khamis, Azme
Ismail, Zuhaimy
Haron, Khalid
Mohammed, Ahmad Tarmizi
author_facet Khamis, Azme
Ismail, Zuhaimy
Haron, Khalid
Mohammed, Ahmad Tarmizi
author_sort Khamis, Azme
building UTM Library
collection Institutional Repository
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
continent Asia
country Malaysia
description A novel thermooptic (TO) polymer switch based on directional coupler structure is proposed for the first time. The key element of the proposed switch is a buried square core polymer waveguides which has been designed for optimum mode matching and coupling with the single mode optical fiber configuration and have large effective index difference by the thermooptic effects. At a wavelength of 1.55 mm with the index contrast of 0.005 between the core and the cladding, the crosstalk of -40 dB and -37 dB for the cross-state and the bar-state of TO switch is demonstrated, respectively
format Article
id my.utm.eprints-9973
institution Universiti Teknologi Malaysia
language en
publishDate 2005
publisher Science Publications
record_format eprints
spelling my.utm.eprints-99732010-10-13T03:45:46Z http://eprints.utm.my/9973/ A novel thermooptic polymer switch based on directional coupler structure Khamis, Azme Ismail, Zuhaimy Haron, Khalid Mohammed, Ahmad Tarmizi QA Mathematics A novel thermooptic (TO) polymer switch based on directional coupler structure is proposed for the first time. The key element of the proposed switch is a buried square core polymer waveguides which has been designed for optimum mode matching and coupling with the single mode optical fiber configuration and have large effective index difference by the thermooptic effects. At a wavelength of 1.55 mm with the index contrast of 0.005 between the core and the cladding, the crosstalk of -40 dB and -37 dB for the cross-state and the bar-state of TO switch is demonstrated, respectively Science Publications 2005 Article PeerReviewed application/pdf en http://eprints.utm.my/9973/1/AzmeKhamis2005_NonlinerGrowthModelsForModeling.pdf Khamis, Azme and Ismail, Zuhaimy and Haron, Khalid and Mohammed, Ahmad Tarmizi (2005) A novel thermooptic polymer switch based on directional coupler structure. Journal of Mathematics and Statistics, 1 (3). pp. 255-233. ISSN 1549-3644 http://www.scipub.org/fulltext/jms2/jms213225-233.pdf
spellingShingle QA Mathematics
Khamis, Azme
Ismail, Zuhaimy
Haron, Khalid
Mohammed, Ahmad Tarmizi
A novel thermooptic polymer switch based on directional coupler structure
title A novel thermooptic polymer switch based on directional coupler structure
title_full A novel thermooptic polymer switch based on directional coupler structure
title_fullStr A novel thermooptic polymer switch based on directional coupler structure
title_full_unstemmed A novel thermooptic polymer switch based on directional coupler structure
title_short A novel thermooptic polymer switch based on directional coupler structure
title_sort novel thermooptic polymer switch based on directional coupler structure
topic QA Mathematics
url http://eprints.utm.my/9973/1/AzmeKhamis2005_NonlinerGrowthModelsForModeling.pdf
http://eprints.utm.my/9973/
http://www.scipub.org/fulltext/jms2/jms213225-233.pdf
url_provider http://eprints.utm.my/