Dissipationless counterflow currents above T_c in bilayer superconductors
Abstract
We report the existence of dissipationless currents in bilayer superconductors above the critical temperature , assuming that the superconducting phase transition is dominated by phase fluctuations. Using a semiclassical lattice gauge theory, we show that thermal fluctuations cause a transition from the superconducting state at low temperature to a resistive state above , accompanied by the proliferation of unbound vortices. Remarkably, while the proliferation of vortex excitations causes dissipation of homogeneous in-plane currents, we find that counterflow currents, flowing in opposite direction within a bilayer, remain dissipationless. The presence of a dissipationless current channel above is attributed to the inhibition of vortex motion by local superconducting coherence within a single bilayer, in the presence of counterflow currents. Our theory presents a possible scenario for the pseudogap phase in bilayer cuprates.
Keywords
Cite
@article{arxiv.2309.04531,
title = {Dissipationless counterflow currents above T_c in bilayer superconductors},
author = {Guido Homann and Marios H. Michael and Jayson G. Cosme and Ludwig Mathey},
journal= {arXiv preprint arXiv:2309.04531},
year = {2023}
}
Comments
Main text : 4 pages, 4 figures. Supplement: 8 pages, 9 figures