Propagation Length of Antiferromagnetic Magnons Governed by Domain Configurations.

Antiferromagnets XMLD-PEEM magnetic imaging magnetic domains magnon scattering magnons spin transport

Journal

Nano letters
ISSN: 1530-6992
Titre abrégé: Nano Lett
Pays: United States
ID NLM: 101088070

Informations de publication

Date de publication:
08 Jan 2020
Historique:
pubmed: 7 12 2019
medline: 7 12 2019
entrez: 7 12 2019
Statut: ppublish

Résumé

The compensated magnetic order and characteristic terahertz frequencies of antiferromagnetic materials make them promising candidates to develop a new class of robust, ultrafast spintronic devices. The manipulation of antiferromagnetic spin-waves in thin films is anticipated to lead to new exotic phenomena such as spin-superfluidity, requiring an efficient propagation of spin-waves in thin films. However, the reported decay length in thin films has so far been limited to a few nanometers. In this work, we achieve efficient spin-wave propagation over micrometer distances in thin films of the insulating antiferromagnet hematite with large magnetic domains while evidencing much shorter attenuation lengths in multidomain thin films. Through transport and magnetic imaging, we determine the role of the magnetic domain structure and spin-wave scattering at domain walls to govern the transport. We manipulate the spin transport by tailoring the domain configuration through field cycle training. For the appropriate crystalline orientation, zero-field spin transport is achieved across micrometers, as required for device integration.

Identifiants

pubmed: 31809058
doi: 10.1021/acs.nanolett.9b03837
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

306-313

Auteurs

Andrew Ross (A)

Institut für Physik , Johannes Gutenberg Universität-Mainz , 55099 , Mainz , Germany.
Graduate School of Excellence Materials Science in Mainz (MAINZ) , Staudinger Weg 9 , 55128 , Mainz , Germany.

Romain Lebrun (R)

Institut für Physik , Johannes Gutenberg Universität-Mainz , 55099 , Mainz , Germany.

Olena Gomonay (O)

Institut für Physik , Johannes Gutenberg Universität-Mainz , 55099 , Mainz , Germany.

Daniel A Grave (DA)

Department of Materials Science and Engineering , Technion-Israel Institute of Technology , Haifa 32000 , Israel.

Asaf Kay (A)

Department of Materials Science and Engineering , Technion-Israel Institute of Technology , Haifa 32000 , Israel.

Lorenzo Baldrati (L)

Institut für Physik , Johannes Gutenberg Universität-Mainz , 55099 , Mainz , Germany.

Sven Becker (S)

Institut für Physik , Johannes Gutenberg Universität-Mainz , 55099 , Mainz , Germany.

Alireza Qaiumzadeh (A)

Center for Quantum Spintronics, Department of Physics , Norwegian University of Science and Technology , NO-7491 Trondheim , Norway.

Camilo Ulloa (C)

Institute for Theoretical Physics , Utrecht University , Princetonplein 5 , 3584 CC Utrecht , The Netherlands.

Gerhard Jakob (G)

Institut für Physik , Johannes Gutenberg Universität-Mainz , 55099 , Mainz , Germany.
Graduate School of Excellence Materials Science in Mainz (MAINZ) , Staudinger Weg 9 , 55128 , Mainz , Germany.

Florian Kronast (F)

Helmholtz-Zentrum Berlin für Materialien und Energie , Albert-Einstein-Strasse 15 , D-12489 Berlin , Germany.

Jairo Sinova (J)

Institut für Physik , Johannes Gutenberg Universität-Mainz , 55099 , Mainz , Germany.
Institute of Physics ASCR , Cukrovarnicka 10 , 162 53 Praha 6 , Czech Republic.

Rembert Duine (R)

Center for Quantum Spintronics, Department of Physics , Norwegian University of Science and Technology , NO-7491 Trondheim , Norway.
Institute for Theoretical Physics , Utrecht University , Princetonplein 5 , 3584 CC Utrecht , The Netherlands.
Department of Applied Physics , Eindhoven University of Technology , P.O. Box 513, 5600 MB Eindhoven , The Netherlands.

Arne Brataas (A)

Center for Quantum Spintronics, Department of Physics , Norwegian University of Science and Technology , NO-7491 Trondheim , Norway.

Avner Rothschild (A)

Department of Materials Science and Engineering , Technion-Israel Institute of Technology , Haifa 32000 , Israel.

Mathias Kläui (M)

Institut für Physik , Johannes Gutenberg Universität-Mainz , 55099 , Mainz , Germany.
Graduate School of Excellence Materials Science in Mainz (MAINZ) , Staudinger Weg 9 , 55128 , Mainz , Germany.
Center for Quantum Spintronics, Department of Physics , Norwegian University of Science and Technology , NO-7491 Trondheim , Norway.

Classifications MeSH