Hybrid collective excitations in topological superconductor/ferromagnetic insulator heterostructures

Fuente: arXiv
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Main Authors: Karabassov, T., Bobkova, I. V., Bobkov, A. M., Vasenko, A. S., Golubov, A. A.
Format: Preprint
Published: 2025
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author Karabassov, T.
Bobkova, I. V.
Bobkov, A. M.
Vasenko, A. S.
Golubov, A. A.
author_facet Karabassov, T.
Bobkova, I. V.
Bobkov, A. M.
Vasenko, A. S.
Golubov, A. A.
contents We develop a linear response theory for the dynamical proximity effect in topological superconductor/ferromagnetic insulator (TS/FI) hybrids. Our approach integrates the nonequilibrium quasiclassical Keldysh-Usadel formalism for the TS with the Landau-Lifshitz-Gilbert equation for the FI's magnetization dynamics. This framework reveals a proximity-induced coupling between magnons and superconducting collective modes. Crucially, we find that spin-momentum locking in the TS surface state drives a hybridization between magnons and the superconducting Nambu-Goldstone (phase) mode, giving rise to composite magnon-Nambu-Goldstone excitations. We analyze the coupling strength's dependence on key parameters both analytically and numerically. In contrast, we demonstrate that the Higgs (amplitude) mode does not couple to magnons at linear order and is thus excluded from the hybrid excitation spectrum. The hybridization between magnons and the superconducting phase mode provides a mechanism for the interconversion of spin signals and the spinless signals carried by collective superconducting excitations, thereby giving new impetus to the development of superconducting spintronics.
format Preprint
id arxiv_https___arxiv_org_abs_2508_00499
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hybrid collective excitations in topological superconductor/ferromagnetic insulator heterostructures
Karabassov, T.
Bobkova, I. V.
Bobkov, A. M.
Vasenko, A. S.
Golubov, A. A.
Superconductivity
Mesoscale and Nanoscale Physics
We develop a linear response theory for the dynamical proximity effect in topological superconductor/ferromagnetic insulator (TS/FI) hybrids. Our approach integrates the nonequilibrium quasiclassical Keldysh-Usadel formalism for the TS with the Landau-Lifshitz-Gilbert equation for the FI's magnetization dynamics. This framework reveals a proximity-induced coupling between magnons and superconducting collective modes. Crucially, we find that spin-momentum locking in the TS surface state drives a hybridization between magnons and the superconducting Nambu-Goldstone (phase) mode, giving rise to composite magnon-Nambu-Goldstone excitations. We analyze the coupling strength's dependence on key parameters both analytically and numerically. In contrast, we demonstrate that the Higgs (amplitude) mode does not couple to magnons at linear order and is thus excluded from the hybrid excitation spectrum. The hybridization between magnons and the superconducting phase mode provides a mechanism for the interconversion of spin signals and the spinless signals carried by collective superconducting excitations, thereby giving new impetus to the development of superconducting spintronics.
title Hybrid collective excitations in topological superconductor/ferromagnetic insulator heterostructures
topic Superconductivity
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2508.00499