I study the scaling behavior in the physical parameters of dynamical entropies, classical and quantum, in a specifically devised model of collision-induced decoherence in a chaotic system. The treatment is fully canonical and no approximations are involved or infinite limits taken. I present this model in a detailed way, in order to clarify my views in the debate about the nature, definition, and relevance of quantum chaos
We show that the rate of increase of von Neumann entropy computed from the reduced density matrix of...
In this topical review we discuss the connections between chaos, decoherence and quantum cosmology. ...
In quantum mechanics, a driving process is expected to be reversible in the quasistatic limit, aka a...
I study the scaling behavior in the physical parameters of dynamical entropies, classical and quantu...
A multi-particle extension of the Arnol'd Cat Hamiltonian system is defined and examined. We propose...
Chaotic systems are highly sensitive to a small perturbation, be they biological, chemical, classica...
Acumen, apprehensional - argumentation, bounds-comprehension, dialectics-discernment, generalization...
In this work the decoherence formalism of quantum mechanics is explored and applied to a number of i...
We study the dynamical generation of entanglement for a two-body interacting system, starting from a...
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...
A multi-particle extension of the Arnol’d cat Hamiltonian system is presented, which can serve as a ...
This review summarizes and amplifies on recent investigations of coupled quantum dynamical systems ...
International audienceThe generation of entanglement produced by a local potential interaction in a ...
Answers to the question how a classical world emerges from underlying quantum physics are revisited,...
In quantum information theory, quantum discord has been proposed as a tool to characterise the prese...
We show that the rate of increase of von Neumann entropy computed from the reduced density matrix of...
In this topical review we discuss the connections between chaos, decoherence and quantum cosmology. ...
In quantum mechanics, a driving process is expected to be reversible in the quasistatic limit, aka a...
I study the scaling behavior in the physical parameters of dynamical entropies, classical and quantu...
A multi-particle extension of the Arnol'd Cat Hamiltonian system is defined and examined. We propose...
Chaotic systems are highly sensitive to a small perturbation, be they biological, chemical, classica...
Acumen, apprehensional - argumentation, bounds-comprehension, dialectics-discernment, generalization...
In this work the decoherence formalism of quantum mechanics is explored and applied to a number of i...
We study the dynamical generation of entanglement for a two-body interacting system, starting from a...
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...
A multi-particle extension of the Arnol’d cat Hamiltonian system is presented, which can serve as a ...
This review summarizes and amplifies on recent investigations of coupled quantum dynamical systems ...
International audienceThe generation of entanglement produced by a local potential interaction in a ...
Answers to the question how a classical world emerges from underlying quantum physics are revisited,...
In quantum information theory, quantum discord has been proposed as a tool to characterise the prese...
We show that the rate of increase of von Neumann entropy computed from the reduced density matrix of...
In this topical review we discuss the connections between chaos, decoherence and quantum cosmology. ...
In quantum mechanics, a driving process is expected to be reversible in the quasistatic limit, aka a...