Innovation of multi directional fiber couplers

This paper presents the innovation of directional fiber coupling which consists of multi fiber joined. Power transfer between and the coupling coefficient the fibers have been determined based on coupled mode theory using Transfer Matrix Method. Theoretical calculation has shown that power in a fibe...

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التفاصيل البيبلوغرافية
المؤلفون الرئيسيون: Saktioto, Toto, Ali, Jalil, Irawan, Dedi, Anto, Defri
التنسيق: مقال
منشور في: ICGST 2012
الموضوعات:
الوصول للمادة أونلاين:http://eprints.utm.my/id/eprint/30565/
http://www.icgst.com/journals/paper.aspx?pid=P1171219190&subid=44#
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id my.utm.30565
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spelling my.utm.305652022-02-28T13:26:42Z http://eprints.utm.my/id/eprint/30565/ Innovation of multi directional fiber couplers Saktioto, Toto Ali, Jalil Irawan, Dedi Anto, Defri QC Physics This paper presents the innovation of directional fiber coupling which consists of multi fiber joined. Power transfer between and the coupling coefficient the fibers have been determined based on coupled mode theory using Transfer Matrix Method. Theoretical calculation has shown that power in a fiber is no longer to be completely transferred to other M fibers (M>3). This is caused by the coupling coefficient between them. The coupled power or coupling ratio among M fibers can be controlled by maintaining the coupling parameters. Experimentally, the change of coupling ratio is investigated, and theoretically by applying dc voltage to the coupling region of fiber coupler. In three dimension, the coupling power distribution shows that strongly depends on the coupling coefficient and coupling length. However, by knowing the coupling power parameters, the fiber coupler of MXN fibers are easier to be fabricated and more applicable in optical network system. ICGST 2012-05 Article PeerReviewed Saktioto, Toto and Ali, Jalil and Irawan, Dedi and Anto, Defri (2012) Innovation of multi directional fiber couplers. ICGST Journal of Programmable Devices, Circuits, and Systems, 12 (1). pp. 1-6. ISSN 1687-4811 http://www.icgst.com/journals/paper.aspx?pid=P1171219190&subid=44#
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QC Physics
spellingShingle QC Physics
Saktioto, Toto
Ali, Jalil
Irawan, Dedi
Anto, Defri
Innovation of multi directional fiber couplers
description This paper presents the innovation of directional fiber coupling which consists of multi fiber joined. Power transfer between and the coupling coefficient the fibers have been determined based on coupled mode theory using Transfer Matrix Method. Theoretical calculation has shown that power in a fiber is no longer to be completely transferred to other M fibers (M>3). This is caused by the coupling coefficient between them. The coupled power or coupling ratio among M fibers can be controlled by maintaining the coupling parameters. Experimentally, the change of coupling ratio is investigated, and theoretically by applying dc voltage to the coupling region of fiber coupler. In three dimension, the coupling power distribution shows that strongly depends on the coupling coefficient and coupling length. However, by knowing the coupling power parameters, the fiber coupler of MXN fibers are easier to be fabricated and more applicable in optical network system.
format Article
author Saktioto, Toto
Ali, Jalil
Irawan, Dedi
Anto, Defri
author_facet Saktioto, Toto
Ali, Jalil
Irawan, Dedi
Anto, Defri
author_sort Saktioto, Toto
title Innovation of multi directional fiber couplers
title_short Innovation of multi directional fiber couplers
title_full Innovation of multi directional fiber couplers
title_fullStr Innovation of multi directional fiber couplers
title_full_unstemmed Innovation of multi directional fiber couplers
title_sort innovation of multi directional fiber couplers
publisher ICGST
publishDate 2012
url http://eprints.utm.my/id/eprint/30565/
http://www.icgst.com/journals/paper.aspx?pid=P1171219190&subid=44#
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score 13.251813