Out-of-equilibrium properties and non-linear effects for interacting quantum impurity systems in their strong coupling regime
arXiv:1303.7441 · doi:10.1103/PhysRevLett.112.216802
Abstract
We provide an exact description of out-of-equilibrium fixed points in quantum impurity systems, that is able to treat time-dependent forcing. Building on this, we then show that analytical out-of-equilibrium results, that exactly treat interactions, can be obtained in interacting quantum impurity systems in their strong coupling regime, provided they are integrable \emph{at} equilibrium and they are "super Fermi liquids", i.e. they only allow for integer charge hopping. For such systems we build an out-of-equilibrium strong coupling expansion, akin to a Sommerfeld expansion in interacting systems. We apply our approach to the Interacting Resonant Level model, and obtain the exact expansion around the low energy fixed point of the universal scaling function for the charge current as a function of voltage, temperature, and frequency, up to order seven.
published version
References in corpus (16)
- Real-time dynamics in Quantum Impurity Systems: A Time-dependent Numerical Renormalization Group Approach
- Real-time path integral approach to nonequilibrium many-body quantum system
- Diagrammatic Monte Carlo simulation of non-equilibrium systems
- Twofold advance in the theoretical understanding of far-from-equilibrium properties of interacting nanostructures
- A finite-frequency functional RG approach to the single impurity Anderson model
- Non-equilibrium steady-states in conformal field theory
- Superoperator nonequilibrium Green's function theory of many-body systems; Applications to charge transfer and transport in open junctions
- New method for studying steady states in quantum impurity problems: The interacting resonant level model
- Exact low temperature results for transport properties of the interacting resonant level model
- Hybrid NRG-DMRG approach to real-time dynamics of quantum impurity systems
- Real-time renormalization group and cutoff scales in nonequilibrium applied to an arbitrary quantum dot in the Coulomb blockade regime
- Quench dynamics of correlated quantum dots
- The interacting resonant level model in nonequilibrium: finite temperature effects
- Infra-red expansion of entanglement entropy in the Interacting Resonant Level Model
- Interacting resonant level coupled to a Luttinger liquid: Population vs. density of states
- Non-equilibrium quantum transport through a dissipative resonant level
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- Finite-bias transport through the interacting resonant level model coupled to a phonon mode -- a functional renormalization group study
- Non-equilibrium transport through a model quantum dot: Hartree-Fock approximation and beyond
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