Observation of shell effects in superconducting nanoparticles of Sn

Bose, Sangita and Garcia-Garcia, Antonio M. and Ugeda, Miguel M. and Urbina, Juan D. and Michaelis, Christian H. and Brihuega, Ivan and Kern, Klaus (2010) Observation of shell effects in superconducting nanoparticles of Sn. NATURE MATERIALS, 9 (7). pp. 550-554. ISSN 1476-1122,

Full text not available from this repository. (Request a copy)

Abstract

In a zero-dimensional superconductor, quantum size effects(1,2) (QSE) not only set the limit to superconductivity, but are also at the heart of new phenomena such as shell effects, which have been predicted to result in large enhancements of the superconducting energy gap(3-6). Here, we experimentally demonstrate these QSE through measurements on single, isolated Pb and Sn nanoparticles. In both systems superconductivity is ultimately quenched at sizes governed by the dominance of the quantum fluctuations of the order parameter. However, before the destruction of superconductivity, in Sn nanoparticles we observe giant oscillations in the superconducting energy gap with particle size leading to enhancements as large as 60%. These oscillations are the first experimental proof of coherent shell effects in nanoscale superconductors. Contrarily, we observe no such oscillations in the gap for Pb nanoparticles, which is ascribed to the suppression of shell effects for shorter coherence lengths. Our study paves the way to exploit QSE in boosting superconductivity in low-dimensional systems.

Item Type: Article
Uncontrolled Keywords: TRANSITION;
Subjects: 500 Science > 530 Physics
Divisions: Physics > Institute of Theroretical Physics > Chair Professor Richter > Group Klaus Richter
Depositing User: Dr. Gernot Deinzer
Date Deposited: 27 Jul 2020 12:29
Last Modified: 27 Jul 2020 12:29
URI: https://pred.uni-regensburg.de/id/eprint/24526

Actions (login required)

View Item View Item