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      Birefringence-like spin transport via linearly polarized antiferromagnetic magnons

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          Antiferromagnetic spintronics

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            Antiferromagnetic spintronics

            Antiferromagnetic materials are internally magnetic, but the direction of their ordered microscopic moments alternates between individual atomic sites. The resulting zero net magnetic moment makes magnetism in antiferromagnets externally invisible. This implies that information stored in antiferromagnetic moments would be invisible to common magnetic probes, insensitive to disturbing magnetic fields, and the antiferromagnetic element would not magnetically affect its neighbours, regardless of how densely the elements are arranged in the device. The intrinsic high frequencies of antiferromagnetic dynamics represent another property that makes antiferromagnets distinct from ferromagnets. Among the outstanding questions is how to manipulate and detect the magnetic state of an antiferromagnet efficiently. In this Review we focus on recent works that have addressed this question. The field of antiferromagnetic spintronics can also be viewed from the general perspectives of spin transport, magnetic textures and dynamics, and materials research. We briefly mention this broader context, together with an outlook of future research and applications of antiferromagnetic spintronics.
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              Long-distance transport of magnon spin information in a magnetic insulator at room temperature

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                Author and article information

                Journal
                Nature Nanotechnology
                Nat. Nanotechnol.
                Springer Science and Business Media LLC
                1748-3387
                1748-3395
                June 1 2020
                Article
                10.1038/s41565-020-0703-8
                32483320
                e68c3502-d5ae-4746-9cb6-ecdfe4498d31
                © 2020

                http://www.springer.com/tdm

                http://www.springer.com/tdm

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