Probing hybridization of a single energy level coupled to superconducting leads

Electron transport through a quantum dot coupled to superconducting leads shows a sharp con-ductance onset when a quantum dot orbital level crosses the superconducting coherence peak of one lead. We study superconducting single electron transistors in the weak coupling limit by connecting individual...

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Veröffentlicht in:Physical review. B, Condensed matter and materials physics Condensed matter and materials physics, 2015-11, Vol.92 (18), Article 184501
Hauptverfasser: van Zanten, D. M. T., Balestro, F., Courtois, H., Winkelmann, C. B.
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Sprache:eng
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Zusammenfassung:Electron transport through a quantum dot coupled to superconducting leads shows a sharp con-ductance onset when a quantum dot orbital level crosses the superconducting coherence peak of one lead. We study superconducting single electron transistors in the weak coupling limit by connecting individual gold nanoparticles with aluminum leads formed by electromigration. We show that the transport features close to the conductance onset threshold can be accurately described by the quantum dot levels' hybridization with the leads, which is strongly enhanced by the divergent density of states at the superconducting gap edge. This highlights the importance of electron cotunneling effects in spectroscopies with superconducting probes.
ISSN:1098-0121
1550-235X
DOI:10.1103/PhysRevB.92.184501