Fingerprints of the local moment formation and its Kondo screening in the generalized susceptibilities of many-electron problems
arXiv:2003.07829 · doi:10.1103/PhysRevLett.126.056403
Abstract
We identify the precise hallmarks of the local magnetic moment formation and its Kondo screening in the frequency structure of the generalized charge susceptibility. The sharpness of our identification even pinpoints an alternative criterion to determine the Kondo temperature of strongly correlated systems on the two-particle level, which only requires calculations at the lowest Matsubara frequency. We showcase its strength by applying it to the single impurity and the periodic Anderson model as well as to the Hubbard model. Our results represent a significant progress for the general understanding of quantum field theory at the two-particle level and allow for tracing the limits of the physics captured by perturbative approaches in correlated regimes.
accepted for publication in Phys. Rev. Lett
References in corpus (29)
- Continuous-time Monte Carlo methods for quantum impurity models
- Scanning tunneling spectroscopy of high-temperature superconductors
- Coherence-incoherence crossover in the normal state of iron-oxypnictides and importance of the Hund's rule coupling
- Non-existence of the Luttinger-Ward functional and misleading convergence of skeleton diagrammatic series for Hubbard-like models
- Josephson current through a single Anderson impurity coupled to BCS leads
- Fluctuation diagnostics of the electron self-energy: Origin of the pseudogap physics
- Finite doping signatures of the Mott transition in the two-dimensional Hubbard model
- A finite-frequency functional RG approach to the single impurity Anderson model
- A novel approach to transport through correlated quantum dots
- Dynamical vertex approximation in its parquet implementation: application to Hubbard nano-rings
- Charge transport through single molecules, quantum dots, and quantum wires
- Consistent partial bosonization of the extended Hubbard model
- Mesoscopic to universal crossover of transmission phase of multi-level quantum dots
- Attractive effect of a strong electronic repulsion -- the physics of vertex divergences
- Quantitative functional renormalization-group description of the two-dimensional Hubbard model
- The Bethe-Salpeter equation at the critical end-point of the Mott transition
- Parquet-like equations for the Hedin three-leg vertex
- Interplay between local response and vertex divergences in many-fermion systems with on-site attraction
- Phase lapses in transmission through interacting two-level quantum dots
- Analytic impurity solver with the Kondo strong-coupling asymptotics
- Functional renormalization group approach to the Anderson impurity model
- Fermi liquid theory and divergences of the two-particle irreducible vertex in the periodic Anderson lattice
- Kondo physics in transport through a quantum dot with Luttinger liquid leads
- Kondo behavior in the asymmetric Anderson model: Analytic approach
- Supercurrent and multiple singlet-doublet phase transitions of a quantum dot Josephson junction inside an Aharonov-Bohm ring
- Spectral function of the Anderson impurity model at finite temperatures
- A quantum criticality perspective on the charging of narrow quantum-dot levels
- Transport through correlated quantum dots: An investigation using the functional renormalization group
- Curie-Weiss susceptibility in strongly correlated electron systems
Cited by in corpus (38)
- Tracking the Footprints of Spin Fluctuations: A MultiMethod, MultiMessenger Study of the Two-Dimensional Hubbard Model
- Multipoint correlation functions: spectral representation and numerical evaluation
- Pseudo-fermion functional renormalization group for spin models
- Spin dynamics of itinerant electrons: local magnetic moment formation and Berry phase
- Single boson exchange representation of the functional renormalization group for strongly interacting many-electron systems
- How to read between the lines of electronic spectra: the diagnostics of fluctuations in strongly correlated electron systems
- Solving the Bethe-Salpeter equation with exponential convergence
- Parametrizations of local vertex corrections from weak to strong coupling: importance of the Hedin three-leg vertex
- Highly nonperturbative nature of the Mott metal-insulator transition: Two-particle vertex divergences in the coexistence region
- Local Plaquette Physics as Key Ingredient of High-Temperature Superconductivity in Cuprates
- Fulfillment of sum rules and Ward identities in the multiloop functional renormalization group solution of the Anderson impurity model
- The dynamical vertex approximation for many-electron systems with spontaneously broken SU(2)-symmetry
- Nonlocal Kondo effect and quantum critical phase in heavy fermion metals
- Non-perturbative intertwining between spin and charge correlations: A "smoking gun" single-boson-exchange result
- Local magnetic moment formation and Kondo screening in the half filled two dimensional single band Hubbard model
- Fluctuations analysis of the spin susceptibility: Néel ordering revisited in dynamical mean field theory
- Two-particle calculations with quantics tensor trains: Solving the parquet equations
- Real-frequency quantum field theory applied to the single-impurity Anderson model
- Single-boson exchange functional renormalization group application to the two-dimensional Hubbard model at weak coupling
- The effect of local magnetic moments on spectral properties and resistivity near the interaction- and doping induced Mott transitions
- Spectral representation of Matsubara n-point functions: Exact kernel functions and applications
- Thermodynamic Stability at the Two-Particle Level
- Protection of Correlation-Induced Phase Instabilities by Exceptional Susceptibilities
- General Shiba mapping for on-site four-point correlation functions
- Compressing the two-particle Green's function using wavelets: Theory and application to the Hubbard atom
- Analytic continuation of multipoint correlation functions
- Effective enhancement of the electron-phonon coupling driven by nonperturbative electronic density fluctuations
- MatsubaraFunctions.jl: An equilibrium Green's function library in the Julia programming language
- Single-boson exchange formulation of the Schwinger-Dyson equation and its application to the functional renormalization group
- Non-Perturbative Feats in the Physics of Correlated Antiferromagnets
- The finite-difference parquet method: Enhanced electron-paramagnon scattering opens a pseudogap
- Interacting nodal semimetals with non-linear bands
- Origin of misleading convergence in self-consistent many-electron theories: Fundamental aspects and practical implications
- Diagrammatic bosonization, aspects of criticality, and the Hohenberg-Mermin-Wagner theorem in parquet approaches
- The plain and simple parquet approximation: single- and multi-boson exchange in the two-dimensional Hubbard model
- Long-term memory magnetic correlations in the Hubbard model: A dynamical mean-field theory analysis
- Local magnetic moment formation and Kondo screening in the presence of Hund exchange: the two-band Hubbard model analysis
- Non-perturbative effects of short-range spatial correlations at the two-particle level