We use a superoperator representation of the quantum kinetic equation to develop nonequilibrium perturbation theory for an inelastic electron current through a quantum dot. We derive a Lindblad-type kinetic equation for an embedded quantum dot (i.e. a quantum dot connected to Lindblad dissipators through a buffer zone). The kinetic equation is converted to non-Hermitian field theory in Liouville–Fock space. The general nonequilibrium many-body perturbation theory is developed and applied to the quantum dot with electron–vibronic and electron–electron interactions. Our perturbation theory becomes equivalent to a Keldysh nonequilibrium Green's function perturbative treatment provided that the buffer zone is large enough to alleviate the probl...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the super-fermion representation of quantum kinetic equations we develop nonequilibrium, po...
We use a superoperator representation of the quantum kinetic equation to develop nonequilibrium pert...
We use a superoperator representation of the quantum kinetic equation to develop nonequilibrium pert...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
Based on the super-fermion representation of quantum kinetic equations we develop nonequilibrium, po...
Based on the super-fermion representation of quantum kinetic equations we develop nonequilibrium, po...
Based on the super-fermion representation of quantum kinetic equations we develop nonequilibrium, po...
A general theoretical approach to study the quantum kinetics in a system coupled to a bath is propos...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the super-fermion representation of quantum kinetic equations we develop nonequilibrium, po...
We use a superoperator representation of the quantum kinetic equation to develop nonequilibrium pert...
We use a superoperator representation of the quantum kinetic equation to develop nonequilibrium pert...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
Based on the super-fermion representation of quantum kinetic equations we develop nonequilibrium, po...
Based on the super-fermion representation of quantum kinetic equations we develop nonequilibrium, po...
Based on the super-fermion representation of quantum kinetic equations we develop nonequilibrium, po...
A general theoretical approach to study the quantum kinetics in a system coupled to a bath is propos...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the formalism of thermofield dynamics we propose a concept of nonequilibrium Fock space and...
Based on the super-fermion representation of quantum kinetic equations we develop nonequilibrium, po...