Perturbation theory of a superconducting 0 − π impurity quantum phase transition
A single-level quantum dot with Coulomb repulsion attached to two superconducting leads is studied via the perturbation expansion in the interaction strength. We use the Nambu formalism and the standard many-body diagrammatic representation of the impurity Green functions to formulate the Matsubara...
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Veröffentlicht in: | Scientific reports 2015-03, Vol.5 (1), p.8821-8821, Article 8821 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A single-level quantum dot with Coulomb repulsion attached to two superconducting leads is studied via the perturbation expansion in the interaction strength. We use the Nambu formalism and the standard many-body diagrammatic representation of the impurity Green functions to formulate the Matsubara self-consistent perturbation expansion. We show that at zero temperature second order of the expansion in its
spin-symmetric
version yields a nearly perfect agreement with the numerically exact calculations for the position of the 0 − π phase boundary at which the Andreev bound states reach the Fermi energy as well as for the values of single-particle quantities in the 0-phase. We present results for phase diagrams, level occupation, induced local superconducting gap, Josephson current and energy of the Andreev bound states with the precision surpassing any (semi)analytical approaches employed thus far. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/srep08821 |