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Short-Lived Electron Transfer in Donor-Bridge-Acceptor Systems

Published 24 Mar 2016 in cond-mat.mes-hall, physics.chem-ph, and quant-ph | (1603.07715v2)

Abstract: We investigate time-dependent electron transfer (ET) in benchmark donor-bridge-acceptor systems. For the small bridge sizes studied, we obtain results far different from the perturbation theory which underlies scattering-based approaches, notably a lack of destructive interference in the ET for certain arrangements of bridge molecules. We also calculate wavepacket transmission in the non-steady-state regime, finding a featureless spectrum, while for the current we find two types of transmission: sequential and direct, where in the latter, the current transmission increases as a function of the energy of the transferred electron, a regime inaccessible by conventional scattering theory.

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