Nonlinear Transport through Quantum Dots Studied by the Time-Dependent DMRG
arXiv:1105.1073 · doi:10.1002/andp.201100031
Abstract
Recent developments on studies of transport through quantum dots obtained by applying the time-dependent density matrix renormalization group method are summarized. Some new aspects of Kondo physics which appear in nonequilibrium steady states are discussed both for the single dot case and for the serially coupled double-quantum-dot case.
8 pages, 15 figures
References in corpus (5)
- Real time evolution using the density matrix renormalization group
- Diagrammatic Monte Carlo simulation of non-equilibrium systems
- Real-time simulations of nonequilibrium transport in the single-impurity Anderson model
- Twofold advance in the theoretical understanding of far-from-equilibrium properties of interacting nanostructures
- Time-dependent DMRG Study on Quantum Dot under a Finite Bias Voltage