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October 1, 2025The Journal of Physical Chemistry A15 citationsOpen Access

Chirality-Induced Spin–Orbit Coupling and Spin Selectivity

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MVMassimiliano Di VentraRGRafael GutiérrezGCGianaurelio Cuniberti

Key Points

  • Chirality-induced spin-orbit coupling leads to significant spin polarization in helical structures, enhancing spin selectivity.
  • Measured spin polarization values are typical for various helical molecular structures, indicating widespread implications of the chirality effect.
  • Findings suggest that broken time-reversal symmetry coupled with chirality may unify the understanding of the CISS phenomenon.
  • The study links the curvature of helical paths to induced spin effects, providing new avenues for research in spintronics.

Abstract

We show that a spinor traveling along a one-dimensional helical path develops a spin-orbit coupling as a result of the curvature of the path. We estimate the magnitude of the associated spin polarization and obtain values typical of many helical molecular structures that showcase the Chirality-induced Spin Selectivity (CISS) effect. We find that this chirality-induced spin-orbit coupling (χ-SOC), in conjunction with broken time-reversal symmetry, may be an important ingredient for the microscopic underpinning of the CISS phenomenon.

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Cite This Study

Ventra et al. (2025) studied this question.

synapsesocial.com/papers/68dd89d7fe798ba2fc497a14https://doi.org/10.1021/acs.jpca.5c05383
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