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May 20, 2026Applied Physics Letters0 citations

Interface-driven enhancement of spin–orbit magnetic readout at a ferromagnetic Rashba–Edelstein interface in Co/Pd

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SLShidong LiEDEoin DolanZCZhendong Chi

Key Points

  • To investigate the efficiency of spin-charge interconversion in Co/Pd heterostructures at a Rashba-Edelstein interface.
  • Used Co/Pd heterostructures to model spin-orbit readout.
  • Removed spurious contributions to isolate the interface-induced signal.
  • Performed ferromagnetic resonance and harmonic spin-orbit torque measurements.
  • Readout signal exceeded bulk spin Hall effect of Pd, obeying Onsager reciprocity.
  • Interfacial pre-activation enhanced the signal by nearly a factor of two.
  • Minor changes in magnetic and torque properties observed, indicating reduced interfacial spin-memory loss.

Abstract

Magneto-electric spin–orbit logic requires efficient spin–charge interconversion in scalable geometries. Here, we use Co/Pd heterostructures as a model system to demonstrate local spin–orbit readout at a ferromagnetic Rashba–Edelstein interface, where conversion occurs directly at the magnetic boundary without non-local diffusion. After removing spurious Hall and geometric contributions, the readout signal exceeds that expected from the bulk spin Hall effect of Pd and obeys Onsager reciprocity, indicating a dominant interfacial origin. Modest interfacial pre-activation reproducibly enhances the signal by nearly a factor of two. The enhancement underscores the strong interfacial sensitivity of the induced spin–charge conversion, while ferromagnetic resonance and harmonic spin–orbit torque measurements show only minor changes in magnetic and torque properties, consistent with reduced interfacial spin-memory loss being a contributing factor.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6a0d4f62f03e14405aa9ab08https://doi.org/10.1063/5.0320996
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