We consider an Anderson impurity model in which the locally correlated orbital is coupled to a host with a gapped density of states. Single-particle dynamics are studied, within a perturbative framework that includes both explicit second-order perturbation theory and self-consistent perturbation theory to all orders in the interaction. Away from particle-hole symmetry the system is shown to be a generalized Fermi liquid (GFL) in the sense of being perturbatively connectable to the non-interacting limit; and the exact Friedel sum rule for the GFL phase is obtained. We show by contrast that the particle-hole symmetric point of the model is not perturbatively connected to the non-interacting limit, and as such is a non-Fermi liquid for all non...
We consider a quantum impurity model in which a bosonic impurity level is coupled to a non-interacti...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...
The exact solution for the generalized Anderson impurity model is presented. Here localized electron...
We develop a non-perturbative local moment approach (LMA) for the gapped Anderson impurity model (GA...
The thesis is a theoretical study of the physics of magnetic impurities in metals, as modeled by the...
We consider a symmetric Anderson impurity model with a soft-gap hybridization vanishing at the Fermi...
This thesis considers quantum impurity models that exhibit a quantum phase transition (QPT) between ...
In this thesis, we study quantum impurity models by means of the diagrammatic perturbation theory. F...
We present exact expressions for the conduction electron phase shifts for the two-impurity Anderson ...
A generalized Anderson model for a magnetic impurity in an interacting one-dimensional electron gas ...
A Local Moment Approach (LMA) is developed for single-particle excitations of a symmetric single imp...
We discuss the results of a study of the two-impurity Anderson model carried out by using a perturba...
Strongly correlated electron systems show a rich variety of astonishing physical phenomena. However,...
A diagrammatic theory around the atomic limit is proposed for the single-impurity Anderson model in ...
We consider a quantum impurity model in which a bosonic impurity level is coupled to a non-interacti...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...
The exact solution for the generalized Anderson impurity model is presented. Here localized electron...
We develop a non-perturbative local moment approach (LMA) for the gapped Anderson impurity model (GA...
The thesis is a theoretical study of the physics of magnetic impurities in metals, as modeled by the...
We consider a symmetric Anderson impurity model with a soft-gap hybridization vanishing at the Fermi...
This thesis considers quantum impurity models that exhibit a quantum phase transition (QPT) between ...
In this thesis, we study quantum impurity models by means of the diagrammatic perturbation theory. F...
We present exact expressions for the conduction electron phase shifts for the two-impurity Anderson ...
A generalized Anderson model for a magnetic impurity in an interacting one-dimensional electron gas ...
A Local Moment Approach (LMA) is developed for single-particle excitations of a symmetric single imp...
We discuss the results of a study of the two-impurity Anderson model carried out by using a perturba...
Strongly correlated electron systems show a rich variety of astonishing physical phenomena. However,...
A diagrammatic theory around the atomic limit is proposed for the single-impurity Anderson model in ...
We consider a quantum impurity model in which a bosonic impurity level is coupled to a non-interacti...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...