arXiv · 0712.0952
Coherent transport of interacting electrons through a single scatterer
Abstract
Using the self-consistent Hartree-Fock method, we calculate the persistent current of weakly-interacting spinless electrons in a one-dimensional ring containing a single delta-barrier. We find that the persistent current decays with the system length (L) asymptotically like $I \propto L^{-1-α}$, where $α> 0$ is the power depending only on the electron-electron interaction. We also simulate tunneling of the weakly-interacting one-dimensional electron gas through a single delta-barrier in a finite wire biased by contacts. We find that the Landauer conductance decays with the system length asymptotically like $L^{-2α}$. The power laws $L^{-1-α}$ and $L^{-2α}$ have so far been observed only in correlated models. Their existence in the Hartree-Fock model is thus surprising.
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Martin Mosko, Pavel Vagner, Andrej Gendiar, Radoslav Nemeth. 2007-12-06. Coherent transport of interacting electrons through a single scatterer. https://doi.org/10.1016/j.physb.2006.01.350
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