4.6 Article

Transient dynamics in interacting nanojunctions within self-consistent perturbation theory

期刊

NEW JOURNAL OF PHYSICS
卷 20, 期 -, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1367-2630/aad99d

关键词

nanoelectronics; molecular electronics; interactions at the nanoscale; non-equilibrium phenomena; dynamical properties; Kondo effect

资金

  1. Spanish MINECO [FIS2014-55486-P, FIS2017-84860-R]
  2. Maria de Maeztu Programme for Units of Excellence in RD [MDM-2014-0377]
  3. Conseil Regional de la Nouvelle Aquitaine

向作者/读者索取更多资源

We present an analysis of the transient electronic and transport properties of a nanojunction in the presence of electron-electron and electron-phonon interactions. We introduce a novel numerical approach which allows for an efficient evaluation of the non-equilibrium Green functions in the time domain. Within this approach we implement different self-consistent diagrammatic approximations in order to analyze the system evolution after a sudden connection to the leads and its convergence to the steady state. These approximations are tested by comparison with available numerically exact results, showing good agreement even for the case of large interaction strength. In addition to its methodological advantages, this approach allows us to study several issues of broad current interest like the build up in time of Kondo correlations and the presence or absence of bistability associated with electron-phonon interactions. We find that, in general, correlation effects tend to remove the possible appearance of charge bistability.

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