Propagation characteristics of a single-polarization optical fiber with an elliptic core and triple-clad

This paper gives the propagation characteristics of a single-polarization optical fiber with an elliptic core and triple-clad. This fiber is designed so as to satisfy the zero total dispersion at the operating wavelength of 1.55 /spl mu/m in the single-polarization region. Thus far, we had studied t...

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Veröffentlicht in:Journal of lightwave technology 2003-05, Vol.21 (5), p.1307-1312
Hauptverfasser: Furukawa, S., Fujimoto, T., Hinata, T.
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container_title Journal of lightwave technology
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creator Furukawa, S.
Fujimoto, T.
Hinata, T.
description This paper gives the propagation characteristics of a single-polarization optical fiber with an elliptic core and triple-clad. This fiber is designed so as to satisfy the zero total dispersion at the operating wavelength of 1.55 /spl mu/m in the single-polarization region. Thus far, we had studied the n propagation characteristics of single-polarization optical fibers with pits between an elliptic core and the outer cladding (Type-1) and with pits alongside the major axis of an elliptic core (Type-2). In this paper, it is found that a single-polarization optical fiber with an elliptic core and triple-clad has better propagation characteristics compared with Type-1 and Type-2. When the relative index difference between the core and the outer cladding is 0.5%, the main comparison results are as follows: 1) The minimum wavelength sensitivity of the total dispersion can be reduced by approximately 1/3 of those for Type-1 and Type-2, and 2) the single-polarization bandwidth is 2.2 times larger than those of Type-1 and Type-2.
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This fiber is designed so as to satisfy the zero total dispersion at the operating wavelength of 1.55 /spl mu/m in the single-polarization region. Thus far, we had studied the n propagation characteristics of single-polarization optical fibers with pits between an elliptic core and the outer cladding (Type-1) and with pits alongside the major axis of an elliptic core (Type-2). In this paper, it is found that a single-polarization optical fiber with an elliptic core and triple-clad has better propagation characteristics compared with Type-1 and Type-2. When the relative index difference between the core and the outer cladding is 0.5%, the main comparison results are as follows: 1) The minimum wavelength sensitivity of the total dispersion can be reduced by approximately 1/3 of those for Type-1 and Type-2, and 2) the single-polarization bandwidth is 2.2 times larger than those of Type-1 and Type-2.</description><identifier>ISSN: 0733-8724</identifier><identifier>EISSN: 1558-2213</identifier><identifier>DOI: 10.1109/JLT.2003.810572</identifier><identifier>CODEN: JLTEDG</identifier><language>eng</language><publisher>New York, NY: IEEE</publisher><subject>Applied sciences ; Bandwidth ; Circuit properties ; Cladding ; Dispersions ; Electric, optical and optoelectronic circuits ; Electronics ; Exact sciences and technology ; Fibers ; Glass ; Integrated optics. 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This fiber is designed so as to satisfy the zero total dispersion at the operating wavelength of 1.55 /spl mu/m in the single-polarization region. Thus far, we had studied the n propagation characteristics of single-polarization optical fibers with pits between an elliptic core and the outer cladding (Type-1) and with pits alongside the major axis of an elliptic core (Type-2). In this paper, it is found that a single-polarization optical fiber with an elliptic core and triple-clad has better propagation characteristics compared with Type-1 and Type-2. When the relative index difference between the core and the outer cladding is 0.5%, the main comparison results are as follows: 1) The minimum wavelength sensitivity of the total dispersion can be reduced by approximately 1/3 of those for Type-1 and Type-2, and 2) the single-polarization bandwidth is 2.2 times larger than those of Type-1 and Type-2.</description><subject>Applied sciences</subject><subject>Bandwidth</subject><subject>Circuit properties</subject><subject>Cladding</subject><subject>Dispersions</subject><subject>Electric, optical and optoelectronic circuits</subject><subject>Electronics</subject><subject>Exact sciences and technology</subject><subject>Fibers</subject><subject>Glass</subject><subject>Integrated optics. Optical fibers and wave guides</subject><subject>Optical and optoelectronic circuits</subject><subject>Optical fiber communication</subject><subject>Optical fiber dispersion</subject><subject>Optical fiber losses</subject><subject>Optical fibers</subject><subject>Optical propagation</subject><subject>Pits</subject><subject>Power transmission lines</subject><subject>Propagation</subject><subject>Propagation losses</subject><subject>Silicon compounds</subject><subject>Telephone companies</subject><subject>Wavelengths</subject><issn>0733-8724</issn><issn>1558-2213</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2003</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNp9kkFr3DAQhUVJoZu05x56EYE2uXgjjWRbPpbQJC0L7SE9m1l5nFVwLEfyEtpf31kcCPSQk0DzvcfTPAnxUau11qq5-LG5XYNSZu20Kmt4I1a6LF0BoM2RWKnamMLVYN-J45zvldLWunoldr9SnPAO5xBH6XeY0M-UQp6DzzL2EmUO491AxRQHTOHvAsaJ5zjIPmwpyacw7ySOkoYhHAbSx0R80ck5hYm1fsDuvXjb45Dpw_N5In5ffbu9vCk2P6-_X37dFN5qmIsaCDrtrFEAaut9B1S7yjkgjb1SqjPeNFQZ0s70qrYWgUiXaLZbbU3nzIk4W3ynFB_3lOf2IWTP0XCkuM9to3TVWOdKJr-8SgIzpS4tg-evgpqzNqrmdTN6-h96H_dp5Ae3zlmowMEBulggn2LOifp2SuEB0x92ag9dttxle-iyXbpkxednW8y89z7h6EN-kdmmMRyAuU8LF4joZcxfoHSV-QcGkKZ-</recordid><startdate>20030501</startdate><enddate>20030501</enddate><creator>Furukawa, S.</creator><creator>Fujimoto, T.</creator><creator>Hinata, T.</creator><general>IEEE</general><general>Institute of Electrical and Electronics Engineers</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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This fiber is designed so as to satisfy the zero total dispersion at the operating wavelength of 1.55 /spl mu/m in the single-polarization region. Thus far, we had studied the n propagation characteristics of single-polarization optical fibers with pits between an elliptic core and the outer cladding (Type-1) and with pits alongside the major axis of an elliptic core (Type-2). In this paper, it is found that a single-polarization optical fiber with an elliptic core and triple-clad has better propagation characteristics compared with Type-1 and Type-2. When the relative index difference between the core and the outer cladding is 0.5%, the main comparison results are as follows: 1) The minimum wavelength sensitivity of the total dispersion can be reduced by approximately 1/3 of those for Type-1 and Type-2, and 2) the single-polarization bandwidth is 2.2 times larger than those of Type-1 and Type-2.</abstract><cop>New York, NY</cop><pub>IEEE</pub><doi>10.1109/JLT.2003.810572</doi><tpages>6</tpages></addata></record>
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source IEEE Electronic Library (IEL)
subjects Applied sciences
Bandwidth
Circuit properties
Cladding
Dispersions
Electric, optical and optoelectronic circuits
Electronics
Exact sciences and technology
Fibers
Glass
Integrated optics. Optical fibers and wave guides
Optical and optoelectronic circuits
Optical fiber communication
Optical fiber dispersion
Optical fiber losses
Optical fibers
Optical propagation
Pits
Power transmission lines
Propagation
Propagation losses
Silicon compounds
Telephone companies
Wavelengths
title Propagation characteristics of a single-polarization optical fiber with an elliptic core and triple-clad
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