Giant oscillations of energy levels in mesoscopic superconductors

The interplay of geometrical and Andreev quantization in mesoscopic superconductors leads to giant mesoscopic oscillations of energy levels as functions of the Fermi momentum and/or sample size. Quantization rules are formulated for closed quasiparticle trajectories in the presence of normal scatter...

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Veröffentlicht in:Physical review letters 2005-11, Vol.95 (19), p.197002-197002, Article 197002
Hauptverfasser: Kopnin, N B, Mel'nikov, A S, Pozdnyakova, V I, Ryzhov, D A, Shereshevskii, I A, Vinokur, V M
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Sprache:eng
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Zusammenfassung:The interplay of geometrical and Andreev quantization in mesoscopic superconductors leads to giant mesoscopic oscillations of energy levels as functions of the Fermi momentum and/or sample size. Quantization rules are formulated for closed quasiparticle trajectories in the presence of normal scattering at the sample boundaries. Two generic examples of mesoscopic systems are studied: (i) one-dimensional Andreev states in a quantum box and (ii) a single vortex in a mesoscopic cylinder.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.95.197002