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Quantum interference enhancement with left-handed materials.

Quantum interference enhancement with left-handed materials. Research Abstract Details 

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  • Quantum interference enhancement with left-handed materials. Abstract Text:

    yaping yangYaping Yang,jingping xuJingping Xu,hong chenHong Chen,shiyao zhuShiyao Zhu,

    The quantum interference between two spontaneous emission transitions, which are orthogonal, in a three-level system, can be greatly enhanced by using left-handed materials due to the focusing and phase compensation effects. The influence of the dispersion and dissipation of the materials on the quantum interference enhancement is investigated, and the enhancement of quantum interference is still significant. The quantum interference enhancement will result in a large quenching of the spontaneous emission, even if the distance between the materials and systems is larger than 10 wavelengths.

    Quantum interference enhancement with left-handed materials. Publishing Authors By Initials

    y yangY Yang,j xuJ Xu,h chenH Chen,s zhuS Zhu,

    For similar abstracts research abstracts see: abstracts research

    PUBMED ID PMID:

    MEDLINE DATE:

    Quantum interference enhancement with left-handed materials. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: Physical review letters

    VOLUME: 100

    Page Numbers: 043601

    Journal Abbreviation: Phys. Rev. Lett.

    ISSN: 0031-9007

    DAY: 28

    MONTH: 01

    YEAR: 2008

    Quantum interference enhancement with left-handed materials. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 401141

    Quantum interference enhancement with left-handed materials. Keywords Mesh Terms:

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    Grant and Affiliation Information for Quantum interference enhancement with left-handed materials.

    AFFILIATION: Department of Physics, Tongji University, Shanghai, China and Department of Physics, Hong Kong Baptist University, Hong Kong, China.

    Country: United States

    United States Research PublicationUnited States Research Publication

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    MEDLINETA: Phys Rev Lett

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