AbstractWe consider quantum systems consisting of a “small” system coupled to two reservoirs (called open systems). We show that such systems have no equilibrium states normal with respect to any state of the decoupled system in which the reservoirs are at different temperatures, provided that either the temperatures or the temperature difference divided by the product of the temperatures are not too small. Our proof involves an elaborate spectral analysis of a general class of generators of the dynamics of open quantum systems, including quantum Liouville operators (“positive temperature Hamiltonians”) which generate the dynamics of the systems under consideration
An N-level quantum system is coupled to a bosonic heat reservoir at positive temperature. We analyze...
We study a small quantum system (e.g. a simplified model for an atom or molecule) inter-acting with ...
We consider the generic model of a finite-size quantum electron system connected to two (temperature...
We consider quantum systems consisting of a \small " system coupled to two reservoirs (called o...
AbstractWe consider quantum systems consisting of a “small” system coupled to two reservoirs (called...
We study the non-equilibrium statistical mechanics of a 2-level quantum system, S, coupled to two in...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
An N-level quantum system is coupled to a bosonic heat reservoir at positive temperature. We analyze...
We study a small quantum system (e.g. a simplified model for an atom or molecule) inter-acting with ...
We consider the generic model of a finite-size quantum electron system connected to two (temperature...
We consider quantum systems consisting of a \small " system coupled to two reservoirs (called o...
AbstractWe consider quantum systems consisting of a “small” system coupled to two reservoirs (called...
We study the non-equilibrium statistical mechanics of a 2-level quantum system, S, coupled to two in...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
We show that the energy transfer through an open quantum system with non-degenerate Hamiltonian weak...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
An N-level quantum system is coupled to a bosonic heat reservoir at positive temperature. We analyze...
We study a small quantum system (e.g. a simplified model for an atom or molecule) inter-acting with ...
We consider the generic model of a finite-size quantum electron system connected to two (temperature...