This work is motivated by the fact that the investigation of non-equilibrium phenomena in strongly correlated electron systems has developed into one of the most active and exciting branches of condensed matter physics as it provides rich new insights that could not be obtained from the study of equilibrium situations. However, a theoretical description of those phenomena is missing. Therefore, in this thesis, we develop a numerical method that can be used to study two minimal models -- the Hubbard model and the Anderson impurity model with general parameter range and time dependence. We begin by introducing the theoretical framework and the general features of the Hubbard model. We then describe the dynamical mean field theory (DMFT), whic...
Nonequilibrium dynamical mean-field theory (DMFT) solves correlated lattice models by obtaining thei...
In this work, we analyze the single-particle Green function of the Hubbard model on the Bethe lattic...
Among the various approximate methods used to study many-particle systems the simplest are mean-fiel...
We derive an exact mapping from the action of nonequilibrium dynamical mean-field theory (DMFT) to a...
We derive an exact mapping from the action of nonequilibrium dynamical mean-field theory (DMFT) to a...
We derive an exact mapping from the action of nonequilibrium dynamical mean-field theory (DMFT) to a...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
We present a numerically exact steady-state inchworm Monte Carlo method for nonequilibrium quantum i...
In the pursuit of accurate descriptions of strongly correlated quantum many-body systems, dynamical ...
In the pursuit of accurate descriptions of strongly correlated quantum many-body systems, dynamical ...
In the pursuit of accurate descriptions of strongly correlated quantum many-body systems, dynamical ...
Nonequilibrium dynamical mean-field theory (DMFT) solves correlated lattice models by obtaining thei...
We propose a non-linear, hybrid quantum-classical scheme for simulating non-equilibrium dynamics of ...
Nonequilibrium dynamical mean-field theory (DMFT) solves correlated lattice models by obtaining thei...
In this work, we analyze the single-particle Green function of the Hubbard model on the Bethe lattic...
Among the various approximate methods used to study many-particle systems the simplest are mean-fiel...
We derive an exact mapping from the action of nonequilibrium dynamical mean-field theory (DMFT) to a...
We derive an exact mapping from the action of nonequilibrium dynamical mean-field theory (DMFT) to a...
We derive an exact mapping from the action of nonequilibrium dynamical mean-field theory (DMFT) to a...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
We present a numerically exact steady-state inchworm Monte Carlo method for nonequilibrium quantum i...
In the pursuit of accurate descriptions of strongly correlated quantum many-body systems, dynamical ...
In the pursuit of accurate descriptions of strongly correlated quantum many-body systems, dynamical ...
In the pursuit of accurate descriptions of strongly correlated quantum many-body systems, dynamical ...
Nonequilibrium dynamical mean-field theory (DMFT) solves correlated lattice models by obtaining thei...
We propose a non-linear, hybrid quantum-classical scheme for simulating non-equilibrium dynamics of ...
Nonequilibrium dynamical mean-field theory (DMFT) solves correlated lattice models by obtaining thei...
In this work, we analyze the single-particle Green function of the Hubbard model on the Bethe lattic...
Among the various approximate methods used to study many-particle systems the simplest are mean-fiel...