Giant Thermoelectric Response of Fluxons in Superconductors

Fuente: arXiv
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Main Authors: Singh, Alok Nath, Bhandari, Bibek, Braggio, Alessandro, Giazotto, Francesco, Jordan, Andrew N.
Format: Preprint
Published: 2024
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author Singh, Alok Nath
Bhandari, Bibek
Braggio, Alessandro
Giazotto, Francesco
Jordan, Andrew N.
author_facet Singh, Alok Nath
Bhandari, Bibek
Braggio, Alessandro
Giazotto, Francesco
Jordan, Andrew N.
contents Thermoelectric devices that operate on quantum principles have been under extensive investigation in the past decades. These devices are at the fundamental limits of miniaturized heat engines and refrigerators, advancing the field of quantum thermodynamics. Most research in this area concerns the use of conduction electrons and holes as charge and heat carriers, and only very recently have superconductors been considered as thermal engines and thermoelectric devices. Here, we investigate the thermoelectric response of an Abrikosov vortex in type-II superconductors in the deep quantum limit. We consider two thermoelectric geometries, a type-II SIN junction and a local Scanning Tunneling Microscope (STM)-tip normal metal probe over the superconductor. We exploit the strong breaking of particle-hole symmetry in bound states at sub-gap energies within the superconducting vortex to realize a giant thermoelectric response in the presence of fluxons. We predict a thermovoltage of a few mV/K at sub-Kelvin temperatures using both semi-analytic and numerical self-consistent solutions of the Bogoliubov-de Gennes equations. Relevant thermoelectric coefficients and figures of merit are found within our model, both in linear and nonlinear regimes. The ZT of the SIN junction is around 1, rising to above 3 for the STM junction centered at the vortex core. We also discuss how this system can be used as a sensitive thermocouple, diode, or localized bolometer to detect low-energy single photons.
format Preprint
id arxiv_https___arxiv_org_abs_2405_05456
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Giant Thermoelectric Response of Fluxons in Superconductors
Singh, Alok Nath
Bhandari, Bibek
Braggio, Alessandro
Giazotto, Francesco
Jordan, Andrew N.
Superconductivity
Mesoscale and Nanoscale Physics
Thermoelectric devices that operate on quantum principles have been under extensive investigation in the past decades. These devices are at the fundamental limits of miniaturized heat engines and refrigerators, advancing the field of quantum thermodynamics. Most research in this area concerns the use of conduction electrons and holes as charge and heat carriers, and only very recently have superconductors been considered as thermal engines and thermoelectric devices. Here, we investigate the thermoelectric response of an Abrikosov vortex in type-II superconductors in the deep quantum limit. We consider two thermoelectric geometries, a type-II SIN junction and a local Scanning Tunneling Microscope (STM)-tip normal metal probe over the superconductor. We exploit the strong breaking of particle-hole symmetry in bound states at sub-gap energies within the superconducting vortex to realize a giant thermoelectric response in the presence of fluxons. We predict a thermovoltage of a few mV/K at sub-Kelvin temperatures using both semi-analytic and numerical self-consistent solutions of the Bogoliubov-de Gennes equations. Relevant thermoelectric coefficients and figures of merit are found within our model, both in linear and nonlinear regimes. The ZT of the SIN junction is around 1, rising to above 3 for the STM junction centered at the vortex core. We also discuss how this system can be used as a sensitive thermocouple, diode, or localized bolometer to detect low-energy single photons.
title Giant Thermoelectric Response of Fluxons in Superconductors
topic Superconductivity
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2405.05456