Using recent results in the field of quantum chaos we derive explicit expressions for the time scale of decoherence induced by the system-environment entanglement. For a generic system-environment interaction and for a generic quantum chaotic system as environment, conditions are derived for energy eigenstates to be preferred states in the weak coupling regime. A simple model is introduced to numerically confirm our predictions. The results presented here may also help with understanding the dynamics of quantum entanglement generation in chaotic quantum systems
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...
We investigate systems with a mixed phase space, where regular and chaotic dynamics coexist. Classic...
A phase damping reservoir composed by N-bosons coupled to a system of interest through a cross-Kerr ...
Using recent results in the field of quantum chaos we derive explicit expressions for the time scale...
We study the influence of chaos and order on entanglement and decoherence. In view of applications i...
We investigate decoherence in the limit where the interaction with the environment is weak and the e...
We analyze the interplay of chaos, entanglement, and decoherence in a system of qubits whose collect...
The entanglement production in bipartite quantum systems is studied for initially unentangled produc...
Entanglement between a quantum system and its environment leads to loss of coherence in the former. ...
We investigate the decoherence properties of a central system composed of two spins 1/2 in contact w...
We discuss various definitions of decoherence and how it can be measured. We compare and contrast de...
Decoherence induced by coupling a system with an environment may display universal features. Here we...
This review summarizes and amplifies on recent investigations of coupled quantum dynamical systems ...
In this work the decoherence formalism of quantum mechanics is explored and applied to a number of i...
The dynamical evolution of a quantum register of arbitrary length coupled to an environment of arbit...
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...
We investigate systems with a mixed phase space, where regular and chaotic dynamics coexist. Classic...
A phase damping reservoir composed by N-bosons coupled to a system of interest through a cross-Kerr ...
Using recent results in the field of quantum chaos we derive explicit expressions for the time scale...
We study the influence of chaos and order on entanglement and decoherence. In view of applications i...
We investigate decoherence in the limit where the interaction with the environment is weak and the e...
We analyze the interplay of chaos, entanglement, and decoherence in a system of qubits whose collect...
The entanglement production in bipartite quantum systems is studied for initially unentangled produc...
Entanglement between a quantum system and its environment leads to loss of coherence in the former. ...
We investigate the decoherence properties of a central system composed of two spins 1/2 in contact w...
We discuss various definitions of decoherence and how it can be measured. We compare and contrast de...
Decoherence induced by coupling a system with an environment may display universal features. Here we...
This review summarizes and amplifies on recent investigations of coupled quantum dynamical systems ...
In this work the decoherence formalism of quantum mechanics is explored and applied to a number of i...
The dynamical evolution of a quantum register of arbitrary length coupled to an environment of arbit...
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...
We investigate systems with a mixed phase space, where regular and chaotic dynamics coexist. Classic...
A phase damping reservoir composed by N-bosons coupled to a system of interest through a cross-Kerr ...