Open Access
Open access
Beilstein Journal of Nanotechnology, volume 13, pages 1418-1431

Density of states in the presence of spin-dependent scattering in SF bilayers: a numerical and analytical approach

Nikita A Parkhomenko
Anastasia V Guravova
Elena A Kazakova
Boris G Lvov
Publication typeJournal Article
Publication date2022-12-01
scimago Q2
SJR0.520
CiteScore5.7
Impact factor2.6
ISSN21904286
General Physics and Astronomy
General Materials Science
Electrical and Electronic Engineering
Abstract

We present a quantitative study of the density of states (DOS) in SF bilayers (where S is a bulk superconductor and F is a ferromagnetic metal) in the diffusive limit. We solve the quasiclassical Usadel equations in the structure considering the presence of magnetic and spin–orbit scattering. For practical reasons, we propose the analytical solution for the density of states in SF bilayers in the case of a thin ferromagnet and low transparency of the SF interface. This solution is confirmed by numerical calculations using a self-consistent two-step iterative method. The behavior of DOS dependencies on magnetic and spin–orbit scattering times is discussed.

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