Eliashberg theory prediction of critical currents in superconducting thin films under DC electric fields

Fuente: arXiv
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Main Authors: Ummarino, Giovanni Alberto, Zaccone, Alessio, Braggio, Alessandro, Giazotto, Francesco
Format: Preprint
Published: 2025
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_version_ 1866908600307286016
author Ummarino, Giovanni Alberto
Zaccone, Alessio
Braggio, Alessandro
Giazotto, Francesco
author_facet Ummarino, Giovanni Alberto
Zaccone, Alessio
Braggio, Alessandro
Giazotto, Francesco
contents Superconducting thin metallic films, functioning as supercurrent gate-tunable transistors, have considerable potential for future quantum electronic devices. Despite extensive research, a comprehensive microscopic quantitative mechanism that elucidates the control or suppression of supercurrents in thin films remains elusive. Focusing on NbN, a prototypical material, and starting from a phenomenological ansatz that links the critical electric field with the kinetic energy parameter needed to break Cooper pairs, we provide a quantitative analysis of the critical current using Eliashberg theory in the dirty limit without adjustable parameters. The critical kinetic energy value is identified, corresponding to the maximum supercurrent that can flow in the thin film. The peak in supercurrent density as a function of the Cooper pairs' kinetic energy arises from the interplay between the increase in supercurrent due to increased kinetic energy and the depairing effect when the kinetic energy becomes sufficiently large. The critical value of the pair's kinetic energy is subsequently employed to estimate the critical value of an external electric field required to suppress superconductivity in the sample. This estimation is in parameter-free agreement with the experimental observations. Although the disorder reduces the temperature dependence of the gating effect on the critical current, at the same time, it increases the unscreened critical electric field needed to suppress superconductivity. This enables the proposal of methods to control and reduce the critical field value necessary to suppress superconductivity in superconducting electronics.
format Preprint
id arxiv_https___arxiv_org_abs_2504_17893
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Eliashberg theory prediction of critical currents in superconducting thin films under DC electric fields
Ummarino, Giovanni Alberto
Zaccone, Alessio
Braggio, Alessandro
Giazotto, Francesco
Superconductivity
Superconducting thin metallic films, functioning as supercurrent gate-tunable transistors, have considerable potential for future quantum electronic devices. Despite extensive research, a comprehensive microscopic quantitative mechanism that elucidates the control or suppression of supercurrents in thin films remains elusive. Focusing on NbN, a prototypical material, and starting from a phenomenological ansatz that links the critical electric field with the kinetic energy parameter needed to break Cooper pairs, we provide a quantitative analysis of the critical current using Eliashberg theory in the dirty limit without adjustable parameters. The critical kinetic energy value is identified, corresponding to the maximum supercurrent that can flow in the thin film. The peak in supercurrent density as a function of the Cooper pairs' kinetic energy arises from the interplay between the increase in supercurrent due to increased kinetic energy and the depairing effect when the kinetic energy becomes sufficiently large. The critical value of the pair's kinetic energy is subsequently employed to estimate the critical value of an external electric field required to suppress superconductivity in the sample. This estimation is in parameter-free agreement with the experimental observations. Although the disorder reduces the temperature dependence of the gating effect on the critical current, at the same time, it increases the unscreened critical electric field needed to suppress superconductivity. This enables the proposal of methods to control and reduce the critical field value necessary to suppress superconductivity in superconducting electronics.
title Eliashberg theory prediction of critical currents in superconducting thin films under DC electric fields
topic Superconductivity
url https://arxiv.org/abs/2504.17893