We analyze the properties of the quasiparticle excitations of metallic antiferromagnetic states in a strongly correlated electron system. The study is based on dynamical mean field theory (DMFT) for the infinite dimensional Hubbard model with antiferromagnetic symmetry breaking. Self-consistent solutions of the DMFT equations are calculated using the numerical renormalization group (NRG). The low energy behavior in these results is then analyzed in terms of renormalized quasiparticles. The parameters for these quasiparticles are calculated directly from the NRG derived self-energy, and also from the low energy fixed point of the effective impurity model. From these the quasiparticle weight and the effective mass are deduced. We show that th...
In this thesis we consider three different models for strongly correlated electrons, namely a multi-...
The half-filled Hubbard model on the Bethe lattice with coordination number z=3 is studied using the...
Strongly correlated electron systems show a rich variety of interesting physical phenomena. However,...
We analyze the properties of the quasiparticle excitations of metallic antiferromagnetic states in a...
We calculate the renormalized parameters for the quasiparticles and their interactions for the Hubba...
A brief account of the zero temperature magnetic response of a system of strongly correlated electro...
Using field theoretical methods models of strongly correlated electrons have been investigated. Appl...
The unusual low temperature behaviour of metals and metal alloys, such as heavy fermion systems, Mot...
Strongly correlated electron systems show a rich variety of astonishing physical phenomena. However,...
International audienceWe supplement (and critically overview) the existing extensive analysis of ant...
The diagrammatic strong-coupling perturbation theory (SCPT) for correlated electron systems is devel...
In recent years the numerical renormalization group method NRG has been extended to the calculation...
We analyze the one-dimensional extended Hubbard model with a single static impurity by using a comp...
International audienceThe most prominent pseudoparticle representations and their applications to co...
We present an improved version of the projector quantum Monte Carlo method, which has recently been ...
In this thesis we consider three different models for strongly correlated electrons, namely a multi-...
The half-filled Hubbard model on the Bethe lattice with coordination number z=3 is studied using the...
Strongly correlated electron systems show a rich variety of interesting physical phenomena. However,...
We analyze the properties of the quasiparticle excitations of metallic antiferromagnetic states in a...
We calculate the renormalized parameters for the quasiparticles and their interactions for the Hubba...
A brief account of the zero temperature magnetic response of a system of strongly correlated electro...
Using field theoretical methods models of strongly correlated electrons have been investigated. Appl...
The unusual low temperature behaviour of metals and metal alloys, such as heavy fermion systems, Mot...
Strongly correlated electron systems show a rich variety of astonishing physical phenomena. However,...
International audienceWe supplement (and critically overview) the existing extensive analysis of ant...
The diagrammatic strong-coupling perturbation theory (SCPT) for correlated electron systems is devel...
In recent years the numerical renormalization group method NRG has been extended to the calculation...
We analyze the one-dimensional extended Hubbard model with a single static impurity by using a comp...
International audienceThe most prominent pseudoparticle representations and their applications to co...
We present an improved version of the projector quantum Monte Carlo method, which has recently been ...
In this thesis we consider three different models for strongly correlated electrons, namely a multi-...
The half-filled Hubbard model on the Bethe lattice with coordination number z=3 is studied using the...
Strongly correlated electron systems show a rich variety of interesting physical phenomena. However,...