We present the first microscopic model for the chirality-induced spin selectivity effect in electron-transfer, in which the internal degrees of freedom of the chiral bridge are explicitly included. By exactly solving this model on short chiral chains we demonstrate that a sizable spin polarization on the acceptor arises from the interplay of coherent and incoherent dynamics, with strong electron-electron correlations yielding many-body states on the bridge as crucial ingredients. Moreover, we include the coherent and incoherent dynamics induced by interactions with vibrational modes and show that they can play an important role in determining the long-time polarized state probed in experiments.
Many-Body Models for Chirality-Induced Spin Selectivity in Electron Transfer / Chiesa, Alessandro; Garlatti, Elena; Mezzadri, Matteo; Celada, Leonardo; Sessoli, Roberta; Wasielewski, Michael R.; Bittl, Robert; Santini, Paolo; Carretta, Stefano. - In: NANO LETTERS. - ISSN 1530-6984. - 24:39(2024), pp. 12133-12139. [10.1021/acs.nanolett.4c02912]
Many-Body Models for Chirality-Induced Spin Selectivity in Electron Transfer
Chiesa, Alessandro;Garlatti, Elena;Mezzadri, Matteo;Celada, Leonardo;Sessoli, Roberta;Santini, Paolo;Carretta, Stefano
2024-01-01
Abstract
We present the first microscopic model for the chirality-induced spin selectivity effect in electron-transfer, in which the internal degrees of freedom of the chiral bridge are explicitly included. By exactly solving this model on short chiral chains we demonstrate that a sizable spin polarization on the acceptor arises from the interplay of coherent and incoherent dynamics, with strong electron-electron correlations yielding many-body states on the bridge as crucial ingredients. Moreover, we include the coherent and incoherent dynamics induced by interactions with vibrational modes and show that they can play an important role in determining the long-time polarized state probed in experiments.File | Dimensione | Formato | |
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