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      Electric Control of Spin Transitions at the Atomic Scale

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          Abstract

          Electric control of spins has been a longstanding goal in the field of solid state physics due to the potential for increased efficiency in information processing. This efficiency can be optimized by transferring spintronics to the atomic scale. We present electric control of spin resonance transitions in single molecules by employing electron spin resonance scanning tunneling microscopy (ESR-STM). We find strong bias voltage dependent shifts in the ESR signal of about ten times its linewidth, which is due to the electric field induced displacement of the spin system in the tunnel junction. This opens up new avenues for ultrafast control of coupled spin systems, even towards atomic scale quantum computing, and expands on understanding and optimizing spin electric coupling in bulk materials.

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          Author and article information

          Journal
          22 September 2022
          Article
          2209.10969
          58bbded2-d547-4fcb-946c-17f0e458292f

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          11 pages, 13 figures, including supplementary information
          cond-mat.mes-hall

          Nanophysics
          Nanophysics

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