We study the dynamics of a quantum rotator, impulsively kicked according to the almost-periodic Fibonacci sequence. A special numerical technique allows us to carry on this investigation for as many as 10(12) kicks. It is shown that above a critical kick strength, the excitation of the system is well described by regular diffusion, while below this border it becomes anomalous and subdiffusive. A law for the dependence of the exponent of anomalous subdiffusion on the kick strength is established numerically. The analogy between these results and quantum diffusion in models of quasicrystals and in the kicked Harper system is discussed
International audienceWe study the quantum dynamics of a peculiar driven system, a Bose gas subjecte...
The dynamics of chaotic Hamiltonian systems such as the kicked rotor continues to guide our understa...
Stochastic properties of Hamiltonian dynamical systems exhibit anomalous behaviour owing to intermit...
We study the dynamics of a quantum rotator, impulsively kicked according to the almost-periodic Fibo...
We study the mechanisms responsible for quantum diffusion in the quasiperiodic kicked rotor. We repo...
The phenomenon of dynamically induced anomalous diffusion is both the classical and quantum kicked r...
We study the resonances of the quantum kicked rotor subjected to an excitation that follows an aperi...
The classical-quantum correspondence of a periodically kicked particle in a 1-D infinite potential w...
We review our recent works on the dynamical localization in the quantum kicked rotator (QKR) and rel...
We investigate the quantum irreversibility and quantum diffusion in a non-Hermitian kicked rotor mod...
We experimentally verify the analytical expressions that exist for the diffusion rate in the quantum...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
We investigate decoherence in the quantum kicked rotator (modeling cold atoms in a pulsed optical fi...
We study the quantum kicked rotator in the classically fully chaotic regime K=10 and for various val...
10.1103/PhysRevE.76.036217Physical Review E - Statistical, Nonlinear, and Soft Matter Physics763-PLE...
International audienceWe study the quantum dynamics of a peculiar driven system, a Bose gas subjecte...
The dynamics of chaotic Hamiltonian systems such as the kicked rotor continues to guide our understa...
Stochastic properties of Hamiltonian dynamical systems exhibit anomalous behaviour owing to intermit...
We study the dynamics of a quantum rotator, impulsively kicked according to the almost-periodic Fibo...
We study the mechanisms responsible for quantum diffusion in the quasiperiodic kicked rotor. We repo...
The phenomenon of dynamically induced anomalous diffusion is both the classical and quantum kicked r...
We study the resonances of the quantum kicked rotor subjected to an excitation that follows an aperi...
The classical-quantum correspondence of a periodically kicked particle in a 1-D infinite potential w...
We review our recent works on the dynamical localization in the quantum kicked rotator (QKR) and rel...
We investigate the quantum irreversibility and quantum diffusion in a non-Hermitian kicked rotor mod...
We experimentally verify the analytical expressions that exist for the diffusion rate in the quantum...
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked...
We investigate decoherence in the quantum kicked rotator (modeling cold atoms in a pulsed optical fi...
We study the quantum kicked rotator in the classically fully chaotic regime K=10 and for various val...
10.1103/PhysRevE.76.036217Physical Review E - Statistical, Nonlinear, and Soft Matter Physics763-PLE...
International audienceWe study the quantum dynamics of a peculiar driven system, a Bose gas subjecte...
The dynamics of chaotic Hamiltonian systems such as the kicked rotor continues to guide our understa...
Stochastic properties of Hamiltonian dynamical systems exhibit anomalous behaviour owing to intermit...