Critical temperature of triplet superconductor-ferromagnet bilayers as a probe for pairing symmetry

Fuente: arXiv
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Main Authors: Hodt, Erik Wegner, Cirillo, Carla, Di Bernardo, Angelo, Attanasio, Carmine, Linder, Jacob
Format: Preprint
Published: 2024
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author Hodt, Erik Wegner
Cirillo, Carla
Di Bernardo, Angelo
Attanasio, Carmine
Linder, Jacob
author_facet Hodt, Erik Wegner
Cirillo, Carla
Di Bernardo, Angelo
Attanasio, Carmine
Linder, Jacob
contents Identifying superconducting materials with spin-polarized Cooper pairs is an important objective both for exploration of new fundamental physics and for cryogenic applications in spintronics and quantum sensing. We here compute the critical temperature $T_c$ of the superconducting transition in a bilayer comprised of a superconductor with an intrinsic spin-triplet order parameter and a ferromagnet. We determine how $T_c$ varies both with the thickness of the ferromagnet and its magnetization direction. We show that both the orbital and spin part of the triplet superconducting order parameter leave clear signatures in $T_c$ which do not appear in a bilayer of a conventional s-wave superconductor and a ferromagnet. In particular, the dependence of $T_c$ on these variables changes depending on whether or not the superconducting order parameter features Andreev bound-states and also changes qualitatively when the magnetization is rotated in the plane of the ferromagnetic film. Measurements of $T_c$ in such bilayers are therefore useful to identify the pairing symmetry of intrinsic triplet superconductors.
format Preprint
id arxiv_https___arxiv_org_abs_2402_10266
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Critical temperature of triplet superconductor-ferromagnet bilayers as a probe for pairing symmetry
Hodt, Erik Wegner
Cirillo, Carla
Di Bernardo, Angelo
Attanasio, Carmine
Linder, Jacob
Superconductivity
Identifying superconducting materials with spin-polarized Cooper pairs is an important objective both for exploration of new fundamental physics and for cryogenic applications in spintronics and quantum sensing. We here compute the critical temperature $T_c$ of the superconducting transition in a bilayer comprised of a superconductor with an intrinsic spin-triplet order parameter and a ferromagnet. We determine how $T_c$ varies both with the thickness of the ferromagnet and its magnetization direction. We show that both the orbital and spin part of the triplet superconducting order parameter leave clear signatures in $T_c$ which do not appear in a bilayer of a conventional s-wave superconductor and a ferromagnet. In particular, the dependence of $T_c$ on these variables changes depending on whether or not the superconducting order parameter features Andreev bound-states and also changes qualitatively when the magnetization is rotated in the plane of the ferromagnetic film. Measurements of $T_c$ in such bilayers are therefore useful to identify the pairing symmetry of intrinsic triplet superconductors.
title Critical temperature of triplet superconductor-ferromagnet bilayers as a probe for pairing symmetry
topic Superconductivity
url https://arxiv.org/abs/2402.10266