A theory is developed for the single-particle spectra of the symmetric Anderson model, in which local moments are introduced explicitly from the outset. Dynamical coupling of single-particle processes to low-energy spin-flip excitations leads, within the framework of a two-self-energy description, to a theory in which both low- and high-energy spectral features are simultaneously captured, while correctly preserving Fermi liquid behaviour at low energies. The atomic limit, non-interacting limit and strong-coupling behaviour of the spectrum are each recovered. For strong coupling in particular, both the exponential asymptotics of the Kondo resonance and concomitant many-body broadening of the Hubbard satellite bands are shown to arise natura...
We develop a non-perturbative local moment approach (LMA) for the gapped Anderson impurity model (GA...
An exact-diagonalization technique on small clusters is used to study the dynamics of the one-dimens...
Strongly correlated electron systems show a rich variety of interesting physical phenomena. However,...
The symmetric periodic Anderson model is well known to capture the essential physics of Kondo insula...
The symmetric periodic Anderson model is well known to capture the essential physics of Kondo insula...
The symmetric periodic Anderson model is well known to capture the essential physics of Kondo insula...
A Local Moment Approach (LMA) is developed for single-particle excitations of a symmetric single imp...
The local moment approach is extended to the orbitally degenerate (SU(2N)) Anderson impurity model (...
The symmetric Anderson impurity model with a hybridization vanishing at the Fermi level. ΔI ∝ |ωVBAR...
Single-particle dynamics of the Anderson impurity model are studied using both the numerical renorma...
The periodic Anderson model (PAM) captures the essential physics of heavy fermion materials. Yet eve...
We consider the universal scaling behaviour of the Kondo resonance in the strong-coupling limit of t...
17 pages, 7 figuresInternational audienceA particle-hole symmetric Anderson impurity model with a me...
A local moment approach is developed for single-particle excitations of a symmetric Anderson impurit...
The recently introduced local moment approach (LMA) is extended to encompass single-particle dynamic...
We develop a non-perturbative local moment approach (LMA) for the gapped Anderson impurity model (GA...
An exact-diagonalization technique on small clusters is used to study the dynamics of the one-dimens...
Strongly correlated electron systems show a rich variety of interesting physical phenomena. However,...
The symmetric periodic Anderson model is well known to capture the essential physics of Kondo insula...
The symmetric periodic Anderson model is well known to capture the essential physics of Kondo insula...
The symmetric periodic Anderson model is well known to capture the essential physics of Kondo insula...
A Local Moment Approach (LMA) is developed for single-particle excitations of a symmetric single imp...
The local moment approach is extended to the orbitally degenerate (SU(2N)) Anderson impurity model (...
The symmetric Anderson impurity model with a hybridization vanishing at the Fermi level. ΔI ∝ |ωVBAR...
Single-particle dynamics of the Anderson impurity model are studied using both the numerical renorma...
The periodic Anderson model (PAM) captures the essential physics of heavy fermion materials. Yet eve...
We consider the universal scaling behaviour of the Kondo resonance in the strong-coupling limit of t...
17 pages, 7 figuresInternational audienceA particle-hole symmetric Anderson impurity model with a me...
A local moment approach is developed for single-particle excitations of a symmetric Anderson impurit...
The recently introduced local moment approach (LMA) is extended to encompass single-particle dynamic...
We develop a non-perturbative local moment approach (LMA) for the gapped Anderson impurity model (GA...
An exact-diagonalization technique on small clusters is used to study the dynamics of the one-dimens...
Strongly correlated electron systems show a rich variety of interesting physical phenomena. However,...