| Literature DB >> 26425436 |
Tomáš Novotný1, Wolfgang Belzig2.
Abstract
We study analytically the Full Counting Statistics of the charge transport through a nanosystem consisting of a few electronic levels weakly coupled to a discrete vibrational mode. In the limit of large transport voltage bias the cumulant generating function can be evaluated explicitly based solely on the intuitive physical arguments and classical master equation description of the vibration mode. We find that for the undamped vibrational modes mutual dynamical interplay between electronic and vibronic degrees of freedom leads to strongly nonlinear (in voltage) transport characteristics of the nanosystem. In particular, we find that for large voltages the k-th cumulant of the current grows as V (2k) to be contrasted with the linear dependence in case of more strongly externally damped and thus thermalized vibrational modes.Entities:
Keywords: electron-vibration interaction; full counting statistics; large-voltage behavior; molecular electronics
Year: 2015 PMID: 26425436 PMCID: PMC4578416 DOI: 10.3762/bjnano.6.188
Source DB: PubMed Journal: Beilstein J Nanotechnol ISSN: 2190-4286 Impact factor: 3.649