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      Field-free switching of a perpendicular magnetic tunnel junction through the interplay of spin–orbit and spin-transfer torques

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          Most cited references41

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          The emergence of spin electronics in data storage.

          Electrons have a charge and a spin, but until recently these were considered separately. In classical electronics, charges are moved by electric fields to transmit information and are stored in a capacitor to save it. In magnetic recording, magnetic fields have been used to read or write the information stored on the magnetization, which 'measures' the local orientation of spins in ferromagnets. The picture started to change in 1988, when the discovery of giant magnetoresistance opened the way to efficient control of charge transport through magnetization. The recent expansion of hard-disk recording owes much to this development. We are starting to see a new paradigm where magnetization dynamics and charge currents act on each other in nanostructured artificial materials. Ultimately, 'spin currents' could even replace charge currents for the transfer and treatment of information, allowing faster, low-energy operations: spin electronics is on its way.
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            The design and verification of MuMax3

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              Spin Hall Effect

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                Author and article information

                Journal
                Nature Electronics
                Nat Electron
                Springer Science and Business Media LLC
                2520-1131
                November 2018
                November 12 2018
                November 2018
                : 1
                : 11
                : 582-588
                Article
                10.1038/s41928-018-0160-7
                411b7bc8-1e93-4e5b-bec3-deb62d936e6e
                © 2018

                http://www.springer.com/tdm

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