We study two-component Bose-Einstein condensates that behave collectively as a spin system obeying the dynamics of a quantum kicked top. Depending on the nonlinear interaction between atoms in the classical limit, the kicked top exhibits both regular and chaotic dynamical behavior. The quantum entanglement is physically meaningful if the system is viewed as a bipartite system, where the subsystem is any one of the two modes. The dynamics of the entanglement between the two modes in this classical chaotic system has been investigated. The chaos leads to rapid rise and saturation of the quantum entanglement. Furthermore, the saturated values of the entanglement fall short of its maximum. The mean entanglement has been used to clearly display ...
We investigate the dissipative dynamics of quantum discord in a decoherence model with two initially...
Quantum systems with the classical analogue in the chaotic region like kicked tops, have been found ...
We study the entanglement dynamics in a two-spin system governed by a bilinear Hamiltonian and assis...
We analyze the interplay of chaos, entanglement, and decoherence in a system of qubits whose collect...
We explore the dynamics of entanglement in classically chaotic systems by considering a multiqubit s...
We study quantum chaos for systems with more than one degree of freedom, for which we present an ana...
International audienceThe standard kicked top involves a periodically kicked angular momentum. By co...
We study the relation between entanglement and quantum chaos in one- and two-dimensional spin-1/2 la...
An exactly solvable case of an interacting Hamiltonian of two bosonic modes is considered to study f...
We investigate both the classical and quantum dynamics of a spin-1 Bose–Einstein condensate (BEC) sy...
We investigate the relation between quantum states and classical fixed-point bifurcations in a coupl...
In this paper, we investigate the effects of spin squeezing on two-coupled quantum kicked tops, whic...
Entanglement is a principle concept in quantum information science and is central to an\ua0understan...
In this paper, we investigate the effects of spin squeezing on two-coupled quantum kicked tops, whic...
Experiments with ultracold atoms periodically kicked in a phase-modulated lattice have clearly shown...
We investigate the dissipative dynamics of quantum discord in a decoherence model with two initially...
Quantum systems with the classical analogue in the chaotic region like kicked tops, have been found ...
We study the entanglement dynamics in a two-spin system governed by a bilinear Hamiltonian and assis...
We analyze the interplay of chaos, entanglement, and decoherence in a system of qubits whose collect...
We explore the dynamics of entanglement in classically chaotic systems by considering a multiqubit s...
We study quantum chaos for systems with more than one degree of freedom, for which we present an ana...
International audienceThe standard kicked top involves a periodically kicked angular momentum. By co...
We study the relation between entanglement and quantum chaos in one- and two-dimensional spin-1/2 la...
An exactly solvable case of an interacting Hamiltonian of two bosonic modes is considered to study f...
We investigate both the classical and quantum dynamics of a spin-1 Bose–Einstein condensate (BEC) sy...
We investigate the relation between quantum states and classical fixed-point bifurcations in a coupl...
In this paper, we investigate the effects of spin squeezing on two-coupled quantum kicked tops, whic...
Entanglement is a principle concept in quantum information science and is central to an\ua0understan...
In this paper, we investigate the effects of spin squeezing on two-coupled quantum kicked tops, whic...
Experiments with ultracold atoms periodically kicked in a phase-modulated lattice have clearly shown...
We investigate the dissipative dynamics of quantum discord in a decoherence model with two initially...
Quantum systems with the classical analogue in the chaotic region like kicked tops, have been found ...
We study the entanglement dynamics in a two-spin system governed by a bilinear Hamiltonian and assis...