This article investigates dissipative preparation of entangled nonequilibrium steady states (NESS). We construct a collision model where the open system consists of two qubits which are coupled to heat reservoirs with different temperatures. The baths are modeled by sequences of qubits interacting with the open system. The model can be studied in different dynamical regimes: with and without environmental memory effects. We report that only a certain bath temperature range allows for entangled NESS. Furthermore, we obtain minimal and maximal critical values for the heat current through the system. Surprisingly, quantum memory effects play a crucial role in the long-time limit. First, memory effects broaden the parameter region where quantum...
The information-carrying capacity of a memory is known to be a thermodynamic resource facilitating t...
When a quantum system is subject to a thermal gradient it may sustain a steady nonequilibrium heat c...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
Quantum mechanical entanglement can exist in noisy open quantum systems at high temperature. A simpl...
A thermal field, which frequently appears in problems of decoherence, provides us with minimal infor...
We show that quantum mechanical entanglement can prevail even in noisy open quantum systems at high ...
AbstractThe possibility of maintaining entanglement in a quantum system at finite, even high, temper...
The entanglement of two qubits, each defined as an effective two-level, spin 1/2 system, is investig...
We study the dynamics of heat flux in the thermalization process of a pair of identical quantum syst...
Using tools developed within the context of quantum information theory, we study the relaxation of a...
Understanding heat transfer between a quantum system and its environment is of undisputed importance...
Quantum non-Markovianity represents memory during system dynamics, which is typically weakened by te...
Autonomous entanglement engines have recently been proposed to generate steady-state bipartite and m...
It is common knowledge that coupling to a heat bath, in general, tends to reduce the entanglement in...
The dynamics of a simple spin chain (two spins) coupled to bosonic baths at different temperatures i...
The information-carrying capacity of a memory is known to be a thermodynamic resource facilitating t...
When a quantum system is subject to a thermal gradient it may sustain a steady nonequilibrium heat c...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
Quantum mechanical entanglement can exist in noisy open quantum systems at high temperature. A simpl...
A thermal field, which frequently appears in problems of decoherence, provides us with minimal infor...
We show that quantum mechanical entanglement can prevail even in noisy open quantum systems at high ...
AbstractThe possibility of maintaining entanglement in a quantum system at finite, even high, temper...
The entanglement of two qubits, each defined as an effective two-level, spin 1/2 system, is investig...
We study the dynamics of heat flux in the thermalization process of a pair of identical quantum syst...
Using tools developed within the context of quantum information theory, we study the relaxation of a...
Understanding heat transfer between a quantum system and its environment is of undisputed importance...
Quantum non-Markovianity represents memory during system dynamics, which is typically weakened by te...
Autonomous entanglement engines have recently been proposed to generate steady-state bipartite and m...
It is common knowledge that coupling to a heat bath, in general, tends to reduce the entanglement in...
The dynamics of a simple spin chain (two spins) coupled to bosonic baths at different temperatures i...
The information-carrying capacity of a memory is known to be a thermodynamic resource facilitating t...
When a quantum system is subject to a thermal gradient it may sustain a steady nonequilibrium heat c...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...