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Magnetic and Electronic Properties of Weyl Semimetal Co(2)MnGa Thin Films

Magnetic Weyl semimetals are newly discovered quantum materials with the potential for use in spintronic applications. Of particular interest is the cubic Heusler compound Co(2)MnGa due to its inherent magnetic and topological properties. This work presents the structural, magnetic and electronic pr...

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Autores principales: Swekis, Peter, Sukhanov, Aleksandr S., Chen, Yi-Cheng, Gloskovskii, Andrei, Fecher, Gerhard H., Panagiotopoulos, Ioannis, Sichelschmidt, Jörg, Ukleev, Victor, Devishvili, Anton, Vorobiev, Alexei, Inosov, Dmytro S., Goennenwein, Sebastian T. B., Felser, Claudia, Markou, Anastasios
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7832844/
https://www.ncbi.nlm.nih.gov/pubmed/33477868
http://dx.doi.org/10.3390/nano11010251
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author Swekis, Peter
Sukhanov, Aleksandr S.
Chen, Yi-Cheng
Gloskovskii, Andrei
Fecher, Gerhard H.
Panagiotopoulos, Ioannis
Sichelschmidt, Jörg
Ukleev, Victor
Devishvili, Anton
Vorobiev, Alexei
Inosov, Dmytro S.
Goennenwein, Sebastian T. B.
Felser, Claudia
Markou, Anastasios
author_facet Swekis, Peter
Sukhanov, Aleksandr S.
Chen, Yi-Cheng
Gloskovskii, Andrei
Fecher, Gerhard H.
Panagiotopoulos, Ioannis
Sichelschmidt, Jörg
Ukleev, Victor
Devishvili, Anton
Vorobiev, Alexei
Inosov, Dmytro S.
Goennenwein, Sebastian T. B.
Felser, Claudia
Markou, Anastasios
author_sort Swekis, Peter
collection PubMed
description Magnetic Weyl semimetals are newly discovered quantum materials with the potential for use in spintronic applications. Of particular interest is the cubic Heusler compound Co(2)MnGa due to its inherent magnetic and topological properties. This work presents the structural, magnetic and electronic properties of magnetron co-sputtered Co(2)MnGa thin films, with thicknesses ranging from 10 to 80 nm. Polarized neutron reflectometry confirmed a uniform magnetization through the films. Hard x-ray photoelectron spectroscopy revealed a high degree of spin polarization and localized (itinerant) character of the Mn d (Co d) valence electrons and accompanying magnetic moments. Further, broadband and field orientation-dependent ferromagnetic resonance measurements indicated a relation between the thickness-dependent structural and magnetic properties. The increase of the tensile strain-induced tetragonal distortion in the thinner films was reflected in an increase of the cubic anisotropy term and a decrease of the perpendicular uniaxial term. The lattice distortion led to a reduction of the Gilbert damping parameter and the thickness-dependent film quality affected the inhomogeneous linewidth broadening. These experimental findings will enrich the understanding of the electronic and magnetic properties of magnetic Weyl semimetal thin films.
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spelling pubmed-78328442021-01-26 Magnetic and Electronic Properties of Weyl Semimetal Co(2)MnGa Thin Films Swekis, Peter Sukhanov, Aleksandr S. Chen, Yi-Cheng Gloskovskii, Andrei Fecher, Gerhard H. Panagiotopoulos, Ioannis Sichelschmidt, Jörg Ukleev, Victor Devishvili, Anton Vorobiev, Alexei Inosov, Dmytro S. Goennenwein, Sebastian T. B. Felser, Claudia Markou, Anastasios Nanomaterials (Basel) Article Magnetic Weyl semimetals are newly discovered quantum materials with the potential for use in spintronic applications. Of particular interest is the cubic Heusler compound Co(2)MnGa due to its inherent magnetic and topological properties. This work presents the structural, magnetic and electronic properties of magnetron co-sputtered Co(2)MnGa thin films, with thicknesses ranging from 10 to 80 nm. Polarized neutron reflectometry confirmed a uniform magnetization through the films. Hard x-ray photoelectron spectroscopy revealed a high degree of spin polarization and localized (itinerant) character of the Mn d (Co d) valence electrons and accompanying magnetic moments. Further, broadband and field orientation-dependent ferromagnetic resonance measurements indicated a relation between the thickness-dependent structural and magnetic properties. The increase of the tensile strain-induced tetragonal distortion in the thinner films was reflected in an increase of the cubic anisotropy term and a decrease of the perpendicular uniaxial term. The lattice distortion led to a reduction of the Gilbert damping parameter and the thickness-dependent film quality affected the inhomogeneous linewidth broadening. These experimental findings will enrich the understanding of the electronic and magnetic properties of magnetic Weyl semimetal thin films. MDPI 2021-01-19 /pmc/articles/PMC7832844/ /pubmed/33477868 http://dx.doi.org/10.3390/nano11010251 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Swekis, Peter
Sukhanov, Aleksandr S.
Chen, Yi-Cheng
Gloskovskii, Andrei
Fecher, Gerhard H.
Panagiotopoulos, Ioannis
Sichelschmidt, Jörg
Ukleev, Victor
Devishvili, Anton
Vorobiev, Alexei
Inosov, Dmytro S.
Goennenwein, Sebastian T. B.
Felser, Claudia
Markou, Anastasios
Magnetic and Electronic Properties of Weyl Semimetal Co(2)MnGa Thin Films
title Magnetic and Electronic Properties of Weyl Semimetal Co(2)MnGa Thin Films
title_full Magnetic and Electronic Properties of Weyl Semimetal Co(2)MnGa Thin Films
title_fullStr Magnetic and Electronic Properties of Weyl Semimetal Co(2)MnGa Thin Films
title_full_unstemmed Magnetic and Electronic Properties of Weyl Semimetal Co(2)MnGa Thin Films
title_short Magnetic and Electronic Properties of Weyl Semimetal Co(2)MnGa Thin Films
title_sort magnetic and electronic properties of weyl semimetal co(2)mnga thin films
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7832844/
https://www.ncbi.nlm.nih.gov/pubmed/33477868
http://dx.doi.org/10.3390/nano11010251
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