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      Level statistics inside the vortex of a superconductor and symplectic random matrix theory in an external source

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          Abstract

          In the core of the vortex of a superconductor, energy levels appear inside the gap. We discuss here through a random matrix approach how these levels are broadened by impurities. It is first shown that the level statistics is governed by an ensemble consisting of a symplectic random potential added to a non-random matrix. A generalization of previous work on the unitary ensemble in the presence of an external source (which relied on the Itzykson-Zuber integral) is discussed for this symplectic case through the formalism introduced by Harish-Chandra and Duistermaat-Heckman. This leads to explicit formulae for the density of states and for the correlation functions, which describe the cross-over from the clean to the dirty limits.

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          Most cited references21

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          Bound Fermion states on a vortex line in a type II superconductor

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            The moment map and equivariant cohomology

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              Distributions of Matrix Variates and Latent Roots Derived from Normal Samples

              Alan James (1964)

                Author and article information

                Journal
                03 February 1999
                Article
                10.1103/PhysRevB.60.3589
                cond-mat/9902037
                809e33b9-0373-4e59-8f47-150477b11845
                History
                Custom metadata
                34 pages, Revtex
                cond-mat.mes-hall

                Nanophysics
                Nanophysics

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