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Chirality-dependent spin polarization in diffusive metals: linear and quadratic responses

Published 8 Aug 2024 in cond-mat.mes-hall and cond-mat.mtrl-sci | (2408.04450v1)

Abstract: We study spin polarization induced by electric fields in an isotropic chiral metal with boundaries using the Boltzmann formalism. We calculate both spin polarization in bulk in the linear response and antiparallel spin polarization near the boundary in the quadratic response against electric fields. We also work out spin polarization induced by the fluctuating electric fields, i.e., noises. Based on these results, we address chirality-induced spin selectivity (CISS) without biased inputs, CISS at room temperature, and the enantio-selective interaction between chiral materials and a magnetic substrate.

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