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      Spin–Orbit Torque in Single-Molecule Junctions from ab Initio

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          Abstract

          The use of electric fields applied across magnetic heterojunctions that lack spatial inversion symmetry has been previously proposed as a nonmagnetic means of controlling localized magnetic moments through spin–orbit torques (SOT). The implementation of this concept at the single-molecule level has remained a challenge, however. Here, we present first-principles calculations of SOT in a single-molecule junction under bias and beyond linear response. Employing a self-consistency scheme invoking density functional theory and nonequilibrium Green’s function theory including spin–orbit interaction, we compute the change of the magnetization with the bias voltage and the associated current-induced SOT. Within the linear regime our quantitative estimates for the SOT in single-molecule junctions yield values similar to those known for magnetic interfaces. Our findings contribute to an improved microscopic understanding of SOT in single molecules.

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          Most cited references72

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          Generalized Gradient Approximation Made Simple

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            Ab initio molecular simulations with numeric atom-centered orbitals

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              Spintronics: Fundamentals and applications

              Reviews of Modern Physics, 76(2), 323-410

                Author and article information

                Journal
                J Phys Chem Lett
                J Phys Chem Lett
                jz
                jpclcd
                The Journal of Physical Chemistry Letters
                American Chemical Society
                1948-7185
                22 May 2024
                30 May 2024
                : 15
                : 21
                : 5747-5753
                Affiliations
                []Institute of Theoretical Physics, University of Regensburg , 93040 Regensburg, Germany
                []Department of Molecular Chemistry and Materials Science, Weizmann Institute of Science , Rehovot 7610001, Israel
                [§ ]CIC nanoGUNE BRTA , Tolosa Hiribidea 76, 20018 San Sebastián, Spain
                Author notes
                Author information
                https://orcid.org/0000-0001-9310-8448
                https://orcid.org/0000-0002-4277-0236
                Article
                10.1021/acs.jpclett.4c00502
                11145651
                38775633
                06cc0759-2cd8-4698-a765-9c3d78f36b13
                © 2024 American Chemical Society

                Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained ( https://creativecommons.org/licenses/by/4.0/).

                History
                : 16 February 2024
                : 14 May 2024
                : 11 May 2024
                Funding
                Funded by: Deutsche Forschungsgemeinschaft, doi 10.13039/501100001659;
                Award ID: SFB 1277-ID 314695032
                Funded by: Diputación Foral de Gipuzkoa, doi 10.13039/501100019124;
                Award ID: 2023-FELL-000002-01
                Funded by: Azrieli Foundation, doi 10.13039/501100005155;
                Award ID: NA
                Categories
                Letter
                Custom metadata
                jz4c00502
                jz4c00502

                Physical chemistry
                Physical chemistry

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