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March 14, 2026Applied Physics Letters0 citations

Photo-induced anomalous Hall effect in Co/WS2 bilayer

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SJSaeid JannatiAAAli AftabiMJMilad Jalali

Key Points

  • To investigate the photo-induced anomalous Hall effect in Co/WS2 bilayer structures.
  • Interfaced a ferromagnetic cobalt layer with tungsten disulfide in a Schottky heterostructure.
  • Illuminated the device with unpolarized light to generate photocarriers.
  • Measured the resulting transverse Hall voltage under varying magnetic fields.
  • Detected transverse Hall voltage that scales linearly with optical power.
  • Identified nonlinear and hysteretic dependence on magnetic-field strength.
  • Demonstrated the ability to reconstruct in-plane magnetic hysteresis using optical excitation.

Abstract

We report the observation of a photo-induced anomalous Hall effect in a ferromagnetic (FM) cobalt (Co)/tungsten disulfide (WS2) Schottky heterostructure. Unlike previously reported transition metal dichalcogenides (TMDCs)-based devices that rely on circularly polarized light or external polarization fields, our FM/TMDC interface generates a transverse Hall voltage under unpolarized illumination, eliminating the need for complex optical configurations. Upon illumination, photocarriers created in the WS2 layer diffuse into the FM Co layer and experience a Lorentz force under an in-plane magnetic field, producing a transverse open-circuit voltage. The voltage scales linearly with optical power but exhibits a nonlinear, hysteretic dependence on magnetic-field strength, reflecting spin-dependent scattering in the FM Co layer. The photo-induced voltage reproduces the magneto-optical Kerr hysteresis loop, enabling reconstruction of in-plane magnetic hysteresis using only optical excitation and two electrical contacts. These findings introduce a simple and efficient platform for optical and magnetic sensing based on FM/TMDC Schottky interfaces.

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Cite This Study

Jannati et al. (2026) studied this question.

synapsesocial.com/papers/69b4ba1818185d8a39802999https://doi.org/10.1063/5.0315554
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