A two-electron Lindblad model shows that charge current through a chiral bridge induces a solenoidal field at the donor interface, enabling spin-selective transport that matches reported CISS polarization in molecular triads and DNA hairpins.
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Multi-band simulation shows inter-band spin-orbit coupling enables >25% spin polarization in MR-CISS when on-site Coulomb interactions are included.
citing papers explorer
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Spinterface-like mechanism of the chirality-induced spin selectivity in donor chiral-bridge acceptor complexes
A two-electron Lindblad model shows that charge current through a chiral bridge induces a solenoidal field at the donor interface, enabling spin-selective transport that matches reported CISS polarization in molecular triads and DNA hairpins.
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Magnetoresistance in chiral systems driven by inter-band spin-orbit coupling
Multi-band simulation shows inter-band spin-orbit coupling enables >25% spin polarization in MR-CISS when on-site Coulomb interactions are included.