Spectral-resolved backreflection measurement of polarization mode dispersion in optical fibers
An improved backreflection technique is proposed to perform the spectral-resolved measurement of polarization mode dispersion (PMD) in optical fibers. This technique is based on the PMD dynamical equation and realized by measuring the polarization state evolutions of the reflected signal in both fre...
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Veröffentlicht in: | Optics letters 2007-06, Vol.32 (12), p.1665-1667 |
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creator | DONG, H SHUM, P ZHOU, J. Q NING, G. X GONG, Y. D WU, C. Q |
description | An improved backreflection technique is proposed to perform the spectral-resolved measurement of polarization mode dispersion (PMD) in optical fibers. This technique is based on the PMD dynamical equation and realized by measuring the polarization state evolutions of the reflected signal in both frequency and time domains. Two experimental setups, employing the far-end Fresnel reflection, are constructed to verify this technique. The agreement between the results of the proposed backreflection technique and the conventional forward technique is observed. |
doi_str_mv | 10.1364/OL.32.001665 |
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Q ; NING, G. X ; GONG, Y. D ; WU, C. Q</creator><creatorcontrib>DONG, H ; SHUM, P ; ZHOU, J. Q ; NING, G. X ; GONG, Y. D ; WU, C. Q</creatorcontrib><description>An improved backreflection technique is proposed to perform the spectral-resolved measurement of polarization mode dispersion (PMD) in optical fibers. This technique is based on the PMD dynamical equation and realized by measuring the polarization state evolutions of the reflected signal in both frequency and time domains. Two experimental setups, employing the far-end Fresnel reflection, are constructed to verify this technique. The agreement between the results of the proposed backreflection technique and the conventional forward technique is observed.</description><identifier>ISSN: 0146-9592</identifier><identifier>EISSN: 1539-4794</identifier><identifier>DOI: 10.1364/OL.32.001665</identifier><identifier>PMID: 17572740</identifier><identifier>CODEN: OPLEDP</identifier><language>eng</language><publisher>Washington, DC: Optical Society of America</publisher><subject>Applied sciences ; Circuit properties ; Electric, optical and optoelectronic circuits ; Electronics ; Exact sciences and technology ; Fundamental areas of phenomenology (including applications) ; Integrated optics. 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The agreement between the results of the proposed backreflection technique and the conventional forward technique is observed.</description><subject>Applied sciences</subject><subject>Circuit properties</subject><subject>Electric, optical and optoelectronic circuits</subject><subject>Electronics</subject><subject>Exact sciences and technology</subject><subject>Fundamental areas of phenomenology (including applications)</subject><subject>Integrated optics. Optical fibers and wave guides</subject><subject>Optical and optoelectronic circuits</subject><subject>Optics</subject><subject>Physics</subject><subject>Polarization</subject><subject>Wave optics</subject><issn>0146-9592</issn><issn>1539-4794</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2007</creationdate><recordtype>article</recordtype><recordid>eNpFkM1LxDAUxIMo7rp68yy96MmuL02aNkdZ_ILCHtSrJU1eINo2NekK-tfbZRf29HgzPwZmCLmksKRM8Lt1tWTZEoAKkR-ROc2ZTHkh-TGZA-UilbnMZuQsxk8AEAVjp2RGi7zICg5z8vE6oB6DatOA0bc_aJJG6a-Atp105_ukQxU3ATvsx8TbZPCtCu5P7TxvMDEuDhji9nd94ofRadUm1jWTeE5OrGojXuzvgrw_PrytntNq_fSyuq9SzagcU2kN5SilAcMYRWpQCIsCwYJpSm2B5sgylitjLC8FWp3ZTGiOWVnKxgBbkJtd7hD89wbjWHcuamxb1aPfxLoAASUFMYG3O1AHH-NUsx6C61T4rSnU2z3rdVWzrN7tOeFX-9xN06E5wPsBJ-B6D6g41bZB9drFA1dKBiXj7B_gbX-8</recordid><startdate>20070615</startdate><enddate>20070615</enddate><creator>DONG, H</creator><creator>SHUM, P</creator><creator>ZHOU, J. Q</creator><creator>NING, G. 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Q</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c319t-9fd14e99d0d331e1de66fe6e0f0db8cf015e3235addf486efc2f26c4e2889bd03</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2007</creationdate><topic>Applied sciences</topic><topic>Circuit properties</topic><topic>Electric, optical and optoelectronic circuits</topic><topic>Electronics</topic><topic>Exact sciences and technology</topic><topic>Fundamental areas of phenomenology (including applications)</topic><topic>Integrated optics. Optical fibers and wave guides</topic><topic>Optical and optoelectronic circuits</topic><topic>Optics</topic><topic>Physics</topic><topic>Polarization</topic><topic>Wave optics</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>DONG, H</creatorcontrib><creatorcontrib>SHUM, P</creatorcontrib><creatorcontrib>ZHOU, J. Q</creatorcontrib><creatorcontrib>NING, G. 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Q</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Spectral-resolved backreflection measurement of polarization mode dispersion in optical fibers</atitle><jtitle>Optics letters</jtitle><addtitle>Opt Lett</addtitle><date>2007-06-15</date><risdate>2007</risdate><volume>32</volume><issue>12</issue><spage>1665</spage><epage>1667</epage><pages>1665-1667</pages><issn>0146-9592</issn><eissn>1539-4794</eissn><coden>OPLEDP</coden><abstract>An improved backreflection technique is proposed to perform the spectral-resolved measurement of polarization mode dispersion (PMD) in optical fibers. This technique is based on the PMD dynamical equation and realized by measuring the polarization state evolutions of the reflected signal in both frequency and time domains. Two experimental setups, employing the far-end Fresnel reflection, are constructed to verify this technique. 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subjects | Applied sciences Circuit properties Electric, optical and optoelectronic circuits Electronics Exact sciences and technology Fundamental areas of phenomenology (including applications) Integrated optics. Optical fibers and wave guides Optical and optoelectronic circuits Optics Physics Polarization Wave optics |
title | Spectral-resolved backreflection measurement of polarization mode dispersion in optical fibers |
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