Analytical solution of coupled self-consistency and linearised Usadel equations for the dirty superconductor at proximity effect

Fuente: arXiv
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Hauptverfasser: Seidov, S. S., Pugach, N. G.
Format: Preprint
Veröffentlicht: 2025
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author Seidov, S. S.
Pugach, N. G.
author_facet Seidov, S. S.
Pugach, N. G.
contents In this manuscript we analytically solve the linearised Usadel equation and the self-consistency equation, defining the critical temperature of the superconducting phase transition of a superconducting film under the proximity effect in the dirty limit. This is a system of coupled differential and integral equations for the anomalous Green function and the order parameter of the superconductor. The proximity effect defines the boundary conditions. The formal solution of the system is found for the general case of the linearized boundary conditions defined by the proximity effect, reducing the set of equations to an eigenvalue problem. The latter defines the critical temperature of the superconducting phase transition and the spatial distributions of the anomalous Green function and the superconducting order parameter.
format Preprint
id arxiv_https___arxiv_org_abs_2506_20557
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Analytical solution of coupled self-consistency and linearised Usadel equations for the dirty superconductor at proximity effect
Seidov, S. S.
Pugach, N. G.
Superconductivity
In this manuscript we analytically solve the linearised Usadel equation and the self-consistency equation, defining the critical temperature of the superconducting phase transition of a superconducting film under the proximity effect in the dirty limit. This is a system of coupled differential and integral equations for the anomalous Green function and the order parameter of the superconductor. The proximity effect defines the boundary conditions. The formal solution of the system is found for the general case of the linearized boundary conditions defined by the proximity effect, reducing the set of equations to an eigenvalue problem. The latter defines the critical temperature of the superconducting phase transition and the spatial distributions of the anomalous Green function and the superconducting order parameter.
title Analytical solution of coupled self-consistency and linearised Usadel equations for the dirty superconductor at proximity effect
topic Superconductivity
url https://arxiv.org/abs/2506.20557