We derive an exact mapping from the action of nonequilibrium dynamical mean-field theory (DMFT) to a single-impurity Anderson model (SIAM) with time-dependent parameters, which can be solved numerically by exact diagonalization. The representability of the nonequilibrium DMFT action by a SIAM is established as a rather general property of nonequilibrium Green functions. We also obtain the nonequilibrium DMFT equations using the cavity method alone. We show how to numerically obtain the SIAM parameters using Cholesky or eigenvector matrix decompositions. As an application, we use a Krylov-based time propagation method to investigate the Hubbard model in which the hopping is switched on, starting from the atomic limit. Possible future develop...
Solving the single-impurity Anderson model is a basic problem of solid state physics. The single-imp...
One of the most reliable and widely used methods to calculate electronic structure of strongly corre...
The dynamicalproperties ofthe single-impurity Anderson model (SIAM) is studied using a novel irreduc...
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...
Nonequilibrium dynamical mean-field theory (DMFT) solves correlated lattice models by obtaining thei...
This work is motivated by the fact that the investigation of non-equilibrium phenomena in strongly c...
Nonequilibrium dynamical mean-field theory (DMFT) solves correlated lattice models by obtaining thei...
The dynamical mean-field theory (DMFT) maps a correlated lattice problem onto an impurity problem of...
The dynamical mean-field theory (DMFT) maps a correlated lattice problem onto an impurity problem of...
We present a methodology to solve the Anderson impurity model in the context of dynamical mean field...
We present a methodology to solve the Anderson impurity model in the context of dynamical mean field...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
We here present how a self-consistent solution of the dynamical mean-field theory equations can be o...
We here present how a self-consistent solution of the dynamical mean-field theory equations can be o...
Solving the single-impurity Anderson model is a basic problem of solid state physics. The single-imp...
One of the most reliable and widely used methods to calculate electronic structure of strongly corre...
The dynamicalproperties ofthe single-impurity Anderson model (SIAM) is studied using a novel irreduc...
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...
Nonequilibrium dynamical mean-field theory (DMFT) solves correlated lattice models by obtaining thei...
This work is motivated by the fact that the investigation of non-equilibrium phenomena in strongly c...
Nonequilibrium dynamical mean-field theory (DMFT) solves correlated lattice models by obtaining thei...
The dynamical mean-field theory (DMFT) maps a correlated lattice problem onto an impurity problem of...
The dynamical mean-field theory (DMFT) maps a correlated lattice problem onto an impurity problem of...
We present a methodology to solve the Anderson impurity model in the context of dynamical mean field...
We present a methodology to solve the Anderson impurity model in the context of dynamical mean field...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
We here present how a self-consistent solution of the dynamical mean-field theory equations can be o...
We here present how a self-consistent solution of the dynamical mean-field theory equations can be o...
Solving the single-impurity Anderson model is a basic problem of solid state physics. The single-imp...
One of the most reliable and widely used methods to calculate electronic structure of strongly corre...
The dynamicalproperties ofthe single-impurity Anderson model (SIAM) is studied using a novel irreduc...