Resonant energy transfer due to exciton-exciton interaction in the strong coupling regime in hybrid InGaN quantum wells

Jianyou Li, Arup Neogi, Teruya Ishihara, Atsushi Tackeuchi

    Research output: Chapter in Book/Report/Conference proceedingConference contribution

    Abstract

    Resonant coupling of excitons in strongly confined hybrid perovskite conjugated to InGaN quantum wells is observed. Temperature and time-resolved-photoluminescence (PL) reveal 10 times enhancement of recombination lifetime in strong-coupling regime due to resonant energy transfer.

    Original languageEnglish
    Title of host publicationOptics InfoBase Conference Papers
    PublisherOptical Society of America
    ISBN (Print)1557528349, 9781557528346
    Publication statusPublished - 2007
    EventQuantum Electronics and Laser Science Conference, QELS 2007 - Baltimore, MD
    Duration: 2007 May 62007 May 6

    Other

    OtherQuantum Electronics and Laser Science Conference, QELS 2007
    CityBaltimore, MD
    Period07/5/607/5/6

    Fingerprint

    Excitons
    Perovskite
    Energy transfer
    Semiconductor quantum wells
    Photoluminescence
    energy transfer
    excitons
    quantum wells
    interactions
    photoluminescence
    life (durability)
    Temperature
    augmentation
    temperature

    ASJC Scopus subject areas

    • Instrumentation
    • Atomic and Molecular Physics, and Optics

    Cite this

    Li, J., Neogi, A., Ishihara, T., & Tackeuchi, A. (2007). Resonant energy transfer due to exciton-exciton interaction in the strong coupling regime in hybrid InGaN quantum wells. In Optics InfoBase Conference Papers Optical Society of America.

    Resonant energy transfer due to exciton-exciton interaction in the strong coupling regime in hybrid InGaN quantum wells. / Li, Jianyou; Neogi, Arup; Ishihara, Teruya; Tackeuchi, Atsushi.

    Optics InfoBase Conference Papers. Optical Society of America, 2007.

    Research output: Chapter in Book/Report/Conference proceedingConference contribution

    Li, J, Neogi, A, Ishihara, T & Tackeuchi, A 2007, Resonant energy transfer due to exciton-exciton interaction in the strong coupling regime in hybrid InGaN quantum wells. in Optics InfoBase Conference Papers. Optical Society of America, Quantum Electronics and Laser Science Conference, QELS 2007, Baltimore, MD, 07/5/6.
    Li J, Neogi A, Ishihara T, Tackeuchi A. Resonant energy transfer due to exciton-exciton interaction in the strong coupling regime in hybrid InGaN quantum wells. In Optics InfoBase Conference Papers. Optical Society of America. 2007
    Li, Jianyou ; Neogi, Arup ; Ishihara, Teruya ; Tackeuchi, Atsushi. / Resonant energy transfer due to exciton-exciton interaction in the strong coupling regime in hybrid InGaN quantum wells. Optics InfoBase Conference Papers. Optical Society of America, 2007.
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    title = "Resonant energy transfer due to exciton-exciton interaction in the strong coupling regime in hybrid InGaN quantum wells",
    abstract = "Resonant coupling of excitons in strongly confined hybrid perovskite conjugated to InGaN quantum wells is observed. Temperature and time-resolved-photoluminescence (PL) reveal 10 times enhancement of recombination lifetime in strong-coupling regime due to resonant energy transfer.",
    author = "Jianyou Li and Arup Neogi and Teruya Ishihara and Atsushi Tackeuchi",
    year = "2007",
    language = "English",
    isbn = "1557528349",
    booktitle = "Optics InfoBase Conference Papers",
    publisher = "Optical Society of America",

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    AU - Li, Jianyou

    AU - Neogi, Arup

    AU - Ishihara, Teruya

    AU - Tackeuchi, Atsushi

    PY - 2007

    Y1 - 2007

    N2 - Resonant coupling of excitons in strongly confined hybrid perovskite conjugated to InGaN quantum wells is observed. Temperature and time-resolved-photoluminescence (PL) reveal 10 times enhancement of recombination lifetime in strong-coupling regime due to resonant energy transfer.

    AB - Resonant coupling of excitons in strongly confined hybrid perovskite conjugated to InGaN quantum wells is observed. Temperature and time-resolved-photoluminescence (PL) reveal 10 times enhancement of recombination lifetime in strong-coupling regime due to resonant energy transfer.

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    SN - 9781557528346

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    PB - Optical Society of America

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