Publication | Open Access
Universal Out-of-Equilibrium Transport in Kondo-Correlated Quantum Dots: Renormalized Dual Fermions on the Keldysh Contour
59
Citations
29
References
2013
Year
EngineeringMany-body Quantum PhysicDual FermionsCharge TransportSemiconductorsTransport CoefficientsNanoelectronicsQuantum MaterialsCharge Carrier TransportLow-dimensional SystemQuantum ScienceElectrical EngineeringPhysicsKondo-correlated Quantum DotsKondo PhysicsQuantum ChemistryNatural SciencesCondensed Matter PhysicsApplied PhysicsDisordered Quantum SystemNonlinear ConductanceUniversal Out-of-equilibrium Transport
The nonlinear conductance of semiconductor heterostructures and single molecule devices exhibiting Kondo physics has recently attracted attention. We address the observed sample dependence of the measured steady state transport coefficients by considering additional electronic contributions in the effective low-energy model underlying these experiments that are absent in particle-hole symmetric setups. A novel version of the superperturbation theory of Hafermann et al. in terms of dual fermions is developed, which correctly captures the low-temperature behavior. We compare our results with the measured transport coefficients.
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