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Slow-light delay enhancement in small-core pure silica photonic crystal fiber based on Brillouin scattering.

Slow-light delay enhancement in small-core pure silica photonic crystal fiber based on Brillouin scattering. Research Abstract Details 

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  • Slow-light delay enhancement in small-core pure silica photonic crystal fiber based on Brillouin scattering. Abstract Text:

    sigang yangSigang Yang,hongwei chenHongwei Chen,ciyuan qiuCiyuan Qiu,ming chenMing Chen,minghua chenMinghua Chen,shizhong xieShizhong Xie,jinyan liJinyan Li,wei chenWei Chen,sigang yangSigang Yang,hongwei chenHongwei Chen,ciyuan qiuCiyuan Qiu,ming chenMing Chen,minghua chenMinghua Chen,shizhong xieShizhong Xie,jinyan liJinyan Li,wei chenWei Chen,sigang yangSigang Yang,hongwei chenHongwei Chen,ciyuan qiuCiyuan Qiu,ming chenMing Chen,minghua chenMinghua Chen,shizhong xieShizhong Xie,jinyan liJinyan Li,wei chenWei Chen,

    We demonstrate that we realize large-delay slow light based on stimulated Brillouin scattering in a short length of our fabricated small-core photonic crystal fiber (PCF). The cavity effect from the partially reflective splices in the end of the PCF enhances slow-light delay significantly. Our experiments show that large slow-light delay can be easily realized in a very short length of the PCF with a moderate pump power. Up to a one-half pulse-width delay is achieved in only 50 m of PCF in a single pump segment.

    Slow-light delay enhancement in small-core pure silica photonic crystal fiber based on Brillouin scattering. Publishing Authors By Initials

    s yangS Yang,h chenH Chen,c qiuC Qiu,m chenM Chen,m chenM Chen,s xieS Xie,j liJ Li,w chenW Chen,s yangS Yang,h chenH Chen,c qiuC Qiu,m chenM Chen,m chenM Chen,s xieS Xie,j liJ Li,w chenW Chen,s yangS Yang,h chenH Chen,c qiuC Qiu,m chenM Chen,m chenM Chen,s xieS Xie,j liJ Li,w chenW Chen,

    For similar abstracts research abstracts see: abstracts research

    PUBMED ID PMID:

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    Slow-light delay enhancement in small-core pure silica photonic crystal fiber based on Brillouin scattering. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: Optics letters

    VOLUME: 33

    Page Numbers: 95-7

    Journal Abbreviation:

    ISSN: 0146-9592

    DAY: 15

    MONTH: Jan

    YEAR: 2008

    Slow-light delay enhancement in small-core pure silica photonic crystal fiber based on Brillouin scattering. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 7708433

    Slow-light delay enhancement in small-core pure silica photonic crystal fiber based on Brillouin scattering. Keywords Mesh Terms:

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    Grant and Affiliation Information for Slow-light delay enhancement in small-core pure silica photonic crystal fiber based on Brillouin scattering.

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    Country: United States

    United States Research PublicationUnited States Research Publication

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    MEDLINETA: Opt Lett

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