Conductance oscillations in a multi-branch Andreev interferometer

  • Lee, W.
  • Lee, Cheol Eui
  • Choi, B. K.
Citations

WEB OF SCIENCE

2
Citations

SCOPUS

2

초록

The conductance, g(phi), of a comb-shaped N-branch Andreev interferometer is calculated as a function of the phase difference, phi, between the adjacent superconducting order parameters. In the ballistic regime, the scattering matrix theory predicts for the conductivity a typical N-branch interference pattern, that is, a 2 pi-periodic phi dependence with a fine oscillation of the period 2 pi/(N - 1), while for a diffusive system with barriers between the vertices the quasiclassical circuit theory yields a simple 2 pi-periodic conductance regardless of N. With ensemble averaging in the scattering matrix theory, the fine oscillations get washed out, resulting in a simple pi-periodic conductance. In star-shaped interferometers with all the N normal vertices merged into a single vertex, the conductance exhibits similar N-branch interference patterns regardless of whether the conduction is ballistic or diffusive or whether it is ensemble-averaged or not.

키워드

conductance oscillationAndreev interferometerTRANSPORTEQUATION
제목
Conductance oscillations in a multi-branch Andreev interferometer
저자
Lee, W.Lee, Cheol EuiChoi, B. K.
DOI
10.3938/jkps.51.2019
발행일
2007-12
유형
Article
저널명
Journal of the Korean Physical Society
51
6
페이지
2019 ~ 2025