Phase-coherent thermoelectricity and non-equilibrium Josephson current in Andreev interferometers
Abstract
We develop a detailed theory describing a non-trivial interplay between non-equilibrium effects and long-range quantum coherence in superconducting hybrid nanostructures exposed to a temperature gradient. We establish a direct relation between thermoelectric and Josephson effects in such structures and demonstrate that at temperatures exceeding the Thouless energy of our device both phase-coherent thermoelectric signal and the supercurrent may be strongly enhanced due to non-equilibrium low energy quasiparticles propagating across the system without any significant phase relaxation. By applying a temperature gradient one can drive the system into a well pronounced -junction state, thereby creating novel opportunities for applications of Andreev interferometers.
Cite
@article{arxiv.2102.01112,
title = {Phase-coherent thermoelectricity and non-equilibrium Josephson current in Andreev interferometers},
author = {Mikhail S. Kalenkov and Andrei D. Zaikin},
journal= {arXiv preprint arXiv:2102.01112},
year = {2021}
}
Comments
20 pages, 9 figures