Giant Variations of Cooper-Pair Size in Nanoscale Superconductors
Abstract
The Cooper-pair size (i.e., the BCS coherence length) in low-dimensional superconductors is dramatically modified by quantum-size effects. In particular, for nanowires made of conventional superconducting materials, we show that the coherence length exhibits size-dependent drops by two-three orders of magnitude and reaches values found in high- superconductors. This phenomenon is surprisingly similar to the well-known BCS-BEC crossover but with one important exception: it is driven by the transverse quantization of the electron spectrum rather than by the strength of the fermion-fermion interaction. Similar results can be expected for other systems with the same structure of the single-particle spectrum, e.g, for superfluid Fermi gases confined in a quantum-wire or quantum-well geometry.
Keywords
Cite
@article{arxiv.0910.2345,
title = {Giant Variations of Cooper-Pair Size in Nanoscale Superconductors},
author = {A. A. Shanenko and M. D. Croitoru and A. Vagov and F. M. Peeters},
journal= {arXiv preprint arXiv:0910.2345},
year = {2009}
}