Starting from a recent result on thermodynamic equilibrium of quantum systems, a connection between thermal properties, originating from Gibbs state probabilistic structure, and quantum correlations is discussed as a consequence of entanglement monogamy. As an example, a simple two-qubit system is analyzed, allowing for an expression of such a connection as an explicit function linking heat capacity to a measure of bipartite entanglement
A simple two-qubit model showing Quantum Phase Transitions as a consequence of ground state level cr...
It is analytically shown that the asymptotic correlations following a quantum quench in exactly solv...
It is analytically shown that the asymptotic correlations following a quantum quench in exactly solv...
Starting from a recent result on thermodynamic equilibrium of quantum systems, a connection between ...
Starting from a recent result on thermodynamic equilibrium of quantum systems, a connection between...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
The heat flow between a quantum system and its reservoir is analyzed when initially both are in a se...
A simple two-qubit model showing quantum phase transitions as a consequence of ground-state-level cr...
A simple two-qubit model showing quantum phase transitions as a consequence of ground-state-level cr...
Quantum correlation, or entanglement, is now believed to be an indispensable physical resource for c...
We demonstrate that the presence of entanglement in macroscopic bodies (e.g., solids) in thermodynam...
We demonstrate that the presence of entanglement in macroscopic bodies (e.g., solids) in thermodynam...
Thermodynamical equilibrium is considered as an effect of quantum entangling of the vacuum state of ...
Quantum entanglement can cause the efficiency of a heat engine to be greater than the efficiency of ...
A simple two-qubit model showing Quantum Phase Transitions as a consequence of ground state level cr...
It is analytically shown that the asymptotic correlations following a quantum quench in exactly solv...
It is analytically shown that the asymptotic correlations following a quantum quench in exactly solv...
Starting from a recent result on thermodynamic equilibrium of quantum systems, a connection between ...
Starting from a recent result on thermodynamic equilibrium of quantum systems, a connection between...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
The heat flow between a quantum system and its reservoir is analyzed when initially both are in a se...
A simple two-qubit model showing quantum phase transitions as a consequence of ground-state-level cr...
A simple two-qubit model showing quantum phase transitions as a consequence of ground-state-level cr...
Quantum correlation, or entanglement, is now believed to be an indispensable physical resource for c...
We demonstrate that the presence of entanglement in macroscopic bodies (e.g., solids) in thermodynam...
We demonstrate that the presence of entanglement in macroscopic bodies (e.g., solids) in thermodynam...
Thermodynamical equilibrium is considered as an effect of quantum entangling of the vacuum state of ...
Quantum entanglement can cause the efficiency of a heat engine to be greater than the efficiency of ...
A simple two-qubit model showing Quantum Phase Transitions as a consequence of ground state level cr...
It is analytically shown that the asymptotic correlations following a quantum quench in exactly solv...
It is analytically shown that the asymptotic correlations following a quantum quench in exactly solv...