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        Nuclear Superfluidity

        Pairing in Finite Systems

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        Author(s)
        Brink, David M.
        Broglia, Ricardo A.
        Collection
        SCOAP3 for Books
        Language
        English
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        Abstract
        Nuclear Superfluidity is a monograph devoted exclusively to pair correlations in nuclei. It begins by exploring pair correlations in a variety of systems including superconductivity in metals at low temperatures and superfluidity in liquid 3He and in neutron stars. The book goes on to introduce basic theoretical methods, symmetry breaking and symmetry restoration in finite many-body systems. The last few chapters are devoted to introducing results on the role of induced interactions in the structure of both normal and exotic nuclei. The most important of these is the renormalization of the pairing interaction due to the coupling of pairs of nucleons to low energy nuclear collective excitations. This book will be essential reading for researchers and students in experimental and theoretical nuclear physics, and related research fields such as metal clusters, fullerenes and quantum dots.
        URI
        https://library.oapen.org/handle/20.500.12657/64004
        Keywords
        pairing force; BCS theory; spontaneous symmetry breaking; pairing vibrations; phase transitions; plastic behaviour; pairing in nuclei; beyond mean field; induced interaction; pairing in exotic nuclei
        DOI
        10.1017/9781009401920
        ISBN
        9781009401920, 9781009401920
        Publisher
        Cambridge University Press
        Publication date and place
        2005
        Grantor
        • SCOAP3 - [...]
        Classification
        Nuclear physics
        Rights
        https://creativecommons.org/licenses/by-nc-nd/4.0/
        • Imported or submitted locally

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        License

        • If not noted otherwise all contents are available under Attribution 4.0 International (CC BY 4.0)

        Credits

        • logo EU
        • This project received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 683680, 810640, 871069 and 964352.

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