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Crystal Symmetry Selected Pure Spin Photocurrent in Altermagnetic Insulators

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

The generation of time-reversal-odd spin-current in metallic altermagnets has attracted considerable interest in spintronics. However, producing pure spin-current in insulating materials remains both challenging and desirable, as insulating states are frequently found in antiferromagnets. Nonlinear photogalvanic effects offer a promising method for generating spin-current in insulators. We here revealed that spin and charge photocurrents in altermagnets are protected by spin point group symmetry. Unlike the photocurrents in parity-time symmetric materials, where spin-orbit coupling (SOC) induces a significant charge current, the spin-current in altermagnets can exist as a pure spin current along specific crystal directions regardless of SOC. We applied our predictions using first-principles calculations to several distinct materials, including wurtzite MnTe and multiferroic BiFeO3. Additionally, we elucidated the previously overlooked linear-inject-current mechanism in BiFeO3 induced by SOC, which may account for the enhanced bulk photovotaic effect in multiferroics.

years

2025 2

verdicts

UNVERDICTED 2

representative citing papers

Symmetry-driven Intrinsic Nonlinear Pure Spin Hall Effect

cond-mat.mes-hall · 2025-02-25 · unverdicted · novelty 7.0

Symmetry analysis identifies 39 magnetic point groups supporting intrinsic nonlinear pure spin Hall effect with predictions for significant currents in Kramers-Weyl metals at room temperature.

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