Only-phase Popov action: thermodynamic derivation and superconducting electrodynamics
Abstract
We provide a thermodynamic derivation of the only-phase Popov action functional, which is often adopted to study the low-energy effective hydrodynamics of a generic nonrelativistic superfluid. It is shown that the crucial assumption is the use of the saddle point approximation after neglecting the quantum-pressure term. As an application, we analyze charged superfluid (superconductors) coupled to the electromagnetic field at zero temperature. Our only-phase and minimally-coupled theory predicts the decay of the electrostatic field inside a superconductor with a characteristic length much smaller than the London penetration depth of the static magnetic field. This result is confirmed also by a relativistic only-phase Popov action we obtain from the Klein-Gordon Lagrangian.
Cite
@article{arxiv.2408.00528,
title = {Only-phase Popov action: thermodynamic derivation and superconducting electrodynamics},
author = {Luca Salasnich and Maria Guglielmina Pelizzo and Francesco Lorenzi},
journal= {arXiv preprint arXiv:2408.00528},
year = {2024}
}
Comments
13 pages, 0 figures. Published in Journal of Physics A: Mathematical and Theoretical