A finite-frequency functional RG approach to the single impurity Anderson model
arXiv:0806.0246 · doi:10.1088/0953-8984/20/34/345205
Abstract
We use the Matsubara functional renormalization group (FRG) to describe electronic correlations within the single impurity Anderson model. In contrast to standard FRG calculations, we account for the frequency-dependence of the two-particle vertex in order to address finite-energy properties (e.g, spectral functions). By comparing with data obtained from the numerical renormalization group (NRG) framework, the FRG approximation is shown to work well for arbitrary parameters (particularly finite temperatures) provided that the electron-electron interaction U is not too large. We demonstrate that aspects of (large U) Kondo physics which are described well by a simpler frequency-independent truncation scheme are no longer captured by the 'higher-order' frequency-dependent approximation. In contrast, at small to intermediate U the results obtained by the more elaborate scheme agree better with NRG data. We suggest to parametrize the two-particle vertex not by three independent energy variables but by introducing three functions each of a single frequency. This considerably reduces the numerical effort to integrate the FRG flow equations.
accepted by J. Phys.: Condensed Matter
References in corpus (10)
- The numerical renormalization group method for quantum impurity systems
- A novel approach to transport through correlated quantum dots
- Impurity and correlation effects on transport in one-dimensional quantum wires
- Functional renormalization group for Luttinger liquids with impurities
- Mesoscopic to universal crossover of transmission phase of multi-level quantum dots
- Phase lapses in transmission through interacting two-level quantum dots
- Correlation effects on resonant tunneling in one-dimensional quantum wires
- Pairing and density-wave phases in Boson-Fermion mixtures at fixed filling
- Phonon-mediated tuning of instabilities in the Hubbard model at half-filling
- Transport through correlated quantum dots: An investigation using the functional renormalization group
Cited by in corpus (46)
- Fluctuation diagnostics of the electron self-energy: Origin of the pseudogap physics
- Charge transport through single molecules, quantum dots, and quantum wires
- Self-energy flows in the two-dimensional repulsive Hubbard model
- Frustrated Quantum Spins at finite Temperature: Pseudo-Majorana functional RG approach
- Boson-Exchange Parquet Solver for dual fermions
- Far-from-equilibrium quantum many-body dynamics
- Dual parquet scheme for the two-dimensional Hubbard model: modelling low-energy physics of high- cuprates with high momentum resolution
- Nonequilibrium, spatio-temporal formation of the Kondo screening-cloud on a lattice
- Fermionic two-loop functional renormalization group for correlated fermions: Method and application to the attractive Hubbard model
- Pseudo-fermion functional renormalization group for spin models
- Long-range photon fluctuations enhance photon-mediated electron pairing and superconductivity
- Functional renormalization group approach to the Anderson impurity model
- Single boson exchange representation of the functional renormalization group for strongly interacting many-electron systems
- Two-particle irreducible functional renormalization group schemes---a comparative study
- Parametrizations of local vertex corrections from weak to strong coupling: importance of the Hedin three-leg vertex
- Fulfillment of sum rules and Ward identities in the multiloop functional renormalization group solution of the Anderson impurity model
- Quench dynamics of correlated quantum dots
- Critical scales in anisotropic spin systems from functional renormalization
- Low-energy effective interactions beyond the constrained random-phase approximation by the functional renormalization group
- Spectral function of the Anderson impurity model at finite temperatures
- An alternative functional renormalization group approach to the single impurity Anderson model
- Functional renormalization group for commensurate antiferromagnets: Beyond the mean-field picture
- Interplay of Coulomb interaction and spin-orbit effects in multi-level quantum dots
- Functional Renormalization Group Approach for Inhomogeneous One-Dimensional Fermi Systems with Finite-Ranged Interactions
- Real-frequency quantum field theory applied to the single-impurity Anderson model
- Spin-orbit interaction and asymmetry effects on Kondo ridges at finite magnetic field
- Single-boson exchange functional renormalization group application to the two-dimensional Hubbard model at weak coupling
- Transient dynamics of a magnetic impurity coupled to superconducting electrodes: exact numerics versus perturbation theory
- Effective Models for the Anderson Impurity and the Kondo Model from Continuous Unitary Transformations
- Neural-network-supported basis optimizer for the configuration interaction problem in quantum many-body clusters: Feasibility study and numerical proof
- Renormalization group flow for fermions into antiferromagnetically ordered phases: Method and mean-field models
- Review of recent developments of the functional renormalization group for systems out of equilibrium
- Parquet approximation and one-loop renormalization group: Equivalence on the leading-logarithmic level
- Pseudo-Majorana functional renormalization for frustrated XXZ spin-1/2 models with field or magnetization along the spin-Z direction at finite temperature
- Second order functional renormalization group approach to one-dimensional systems in real and momentum space
- MatsubaraFunctions.jl: An equilibrium Green's function library in the Julia programming language
- Parquet theory for molecular systems: Formalism and static kernel parquet approximation
- Interaction induced local moments in parallel quantum dots within the functional renormalization group approach
- Quasi-particle functional Renormalisation Group calculations in the two-dimensional t-t'-Hubbard model
- Diagrammatic bosonization, aspects of criticality, and the Hohenberg-Mermin-Wagner theorem in parquet approaches
- Leading-logarithmic approximation by one-loop renormalization group within Matsubara formalism
- Many-body correlations in Floquet steady-states: Frequency-resolved renormalization group of the driven Anderson impurity
- Functional renormalization of spinless triangular-lattice fermions: -patch vs. truncated-unity scheme
- Frequency Dependent Functional Renormalization Group for Interacting Fermionic Systems
- Functional renormalization group approach to the singlet-triplet transition in quantum dots
- Functional renormalization with interaction flows: A single-boson exchange perspective and application to electron-phonon systems