We consider a quantum system consisting of a regular chain of elementary subsystems with nearest neighbor interactions and assume that the total system is in a canonical state with temperature T. We analyze under what condition the state factors into a product of canonical density matrices with respect to groups of n subsystems each, and when these groups have the same temperature T. While in classical mechanics the validity of this procedure only depends on the size of the groups n, in quantum mechanics the minimum group size n(min) also depends on the temperature T! As examples, we apply our analysis to a harmonic chain and different types of Ising spin chains. We discuss various features that show up due to the characteristics of the mod...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
Investigating stability and simulatability of quantum states on lattice systems is a central topic i...
The entanglement at finite temperatures are analyzed by using thermal models for colored quarks maki...
We consider a quantum system consisting of a regular chain of elementary subsystems with nearest nei...
We consider a regular chain of quantum particles with nearest neighbor interactions in a canonical s...
Recent progress in the synthesis and processing of nano-structured materials and systems calls for a...
This work is concerned with thermal quantum states of Hamiltonians on spin- and fermionic-lattice sy...
In traditional thermodynamics, temperature is a local quantity: a subsystem of a large thermal syste...
This work is concerned with thermal quantum states of Hamiltonians on spin and fermionic lattice sys...
We consider a quantum system of fixed size consisting of a regular chain of n-level subsystems, wher...
We consider a quantum system of fixed size consisting of a regular chain of n-level subsystems, wher...
We consider the concept of temperature in a setting beyond the standard thermodynamics prescriptions...
The ultimate precision of any measurement of the temperature of a quantum system is the inverse of t...
Quantum Mechanics was established as the theory of the microscopic world, which allowed to understan...
The quantum correlations present in a system of three coupled spins 12 in a thermal state are invest...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
Investigating stability and simulatability of quantum states on lattice systems is a central topic i...
The entanglement at finite temperatures are analyzed by using thermal models for colored quarks maki...
We consider a quantum system consisting of a regular chain of elementary subsystems with nearest nei...
We consider a regular chain of quantum particles with nearest neighbor interactions in a canonical s...
Recent progress in the synthesis and processing of nano-structured materials and systems calls for a...
This work is concerned with thermal quantum states of Hamiltonians on spin- and fermionic-lattice sy...
In traditional thermodynamics, temperature is a local quantity: a subsystem of a large thermal syste...
This work is concerned with thermal quantum states of Hamiltonians on spin and fermionic lattice sys...
We consider a quantum system of fixed size consisting of a regular chain of n-level subsystems, wher...
We consider a quantum system of fixed size consisting of a regular chain of n-level subsystems, wher...
We consider the concept of temperature in a setting beyond the standard thermodynamics prescriptions...
The ultimate precision of any measurement of the temperature of a quantum system is the inverse of t...
Quantum Mechanics was established as the theory of the microscopic world, which allowed to understan...
The quantum correlations present in a system of three coupled spins 12 in a thermal state are invest...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
Investigating stability and simulatability of quantum states on lattice systems is a central topic i...
The entanglement at finite temperatures are analyzed by using thermal models for colored quarks maki...