The aim of this paper is to study the question of whether or not equilibrium states exist in open quantum systems that are embedded in at least two environments and are described by a non-Hermitian Hamilton operator H . The eigenfunctions of H contain the influence of exceptional points (EPs) and external mixing (EM) of the states via the environment. As a result, equilibrium states exist (far from EPs). They are different from those of the corresponding closed system. Their wavefunctions are orthogonal even though the Hamiltonian is non-Hermitian
Open quantum systems have become a rapidly developing sector for research. Such systems present nove...
We first briefly review the non-Hermitian effective Hamiltonian approach to open quantum systems and...
The Schroedinger equation is used to describe a quantum system evolving in time by a non-Hermitian H...
The aim of this paper is to study the question of whether or not equilibrium states exist in open qu...
The Hamilton operator of an open quantum system is non-Hermitian. Its eigenvalues are generally comp...
Non-Hermitian quantum physics is used successfully for the description of different puzzling experim...
AbstractWe consider quantum systems consisting of a “small” system coupled to two reservoirs (called...
This monograph provides graduate students and also professional researchers aiming to understand the...
Using the formalism for the description of open quantum systems by means of a non-Hermitian Hamilton...
We consider quantum systems consisting of a \small " system coupled to two reservoirs (called o...
Abstract. The non-equilibrium dynamics of isolated quantum systems represent a theoretical and exper...
The eigenvalues of a non-Hermitian Hamilton operator are complex and provide not only the energies b...
Open quantum systems have become a rapidly developing sector for research. Such systems present nove...
Exceptional points (EPs) determine the dynamics of open quantum systems and cause also PT symmetry b...
Exceptional points (EPs) determine the dynamics of open quantum systems and cause also PT symmetry b...
Open quantum systems have become a rapidly developing sector for research. Such systems present nove...
We first briefly review the non-Hermitian effective Hamiltonian approach to open quantum systems and...
The Schroedinger equation is used to describe a quantum system evolving in time by a non-Hermitian H...
The aim of this paper is to study the question of whether or not equilibrium states exist in open qu...
The Hamilton operator of an open quantum system is non-Hermitian. Its eigenvalues are generally comp...
Non-Hermitian quantum physics is used successfully for the description of different puzzling experim...
AbstractWe consider quantum systems consisting of a “small” system coupled to two reservoirs (called...
This monograph provides graduate students and also professional researchers aiming to understand the...
Using the formalism for the description of open quantum systems by means of a non-Hermitian Hamilton...
We consider quantum systems consisting of a \small " system coupled to two reservoirs (called o...
Abstract. The non-equilibrium dynamics of isolated quantum systems represent a theoretical and exper...
The eigenvalues of a non-Hermitian Hamilton operator are complex and provide not only the energies b...
Open quantum systems have become a rapidly developing sector for research. Such systems present nove...
Exceptional points (EPs) determine the dynamics of open quantum systems and cause also PT symmetry b...
Exceptional points (EPs) determine the dynamics of open quantum systems and cause also PT symmetry b...
Open quantum systems have become a rapidly developing sector for research. Such systems present nove...
We first briefly review the non-Hermitian effective Hamiltonian approach to open quantum systems and...
The Schroedinger equation is used to describe a quantum system evolving in time by a non-Hermitian H...