Nonequilibrium charge transport in an interacting open system: Two-particle resonance and current asymmetry

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Date
2009-08-04
Authors
Roy, Dibyendu
Soori, Abhiram
Sen, Diptiman
Dhar, Abhishek
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Abstract
We use the Lippman-Schwinger scattering theory to study nonequilibrium electron transport through an interacting open quantum dot. The two-particle current is evaluated exactly while we use perturbation theory to calculate the current when the leads are Fermi liquids at different chemical potentials. We find an interesting two-particle resonance induced by the interaction and obtain criteria to observe it when a small bias is applied across the dot. Finally, for a system without spatial inversion symmetry, we find that the two-particle current is quite different depending on whether the electrons are incident from the left or the right lead. © 2009 The American Physical Society.
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Physical Review B - Condensed Matter and Materials Physics. v.80(7)