We study the resonances of the quantum kicked rotor subjected to an extended initial distribution. For the primary resonances we obtain the dispersion relation for the map of this system. We find an analytical dependence of the statistical moments on the shape of the initial distribution. For the secondary resonances we obtain numerically a similar dependence. This allows us to devise an extended initial condition which produces an average angular momentum pointing in a preset direction which increases with time with a preset ratio
We address the issue of fluctuations, about an exponential line shape, in a pair of one-dimensional ...
We study a system of two atomic quantum kicked rotors with hard-core interaction. This system shows ...
We analytically investigate the analogy between a standard continuous-time quantum walk in one dimen...
In quantum resonance, the atom optics kicked rotor, if it underlies a series of kicks, performs a ra...
peer reviewedaudience: researcher, professional, studentWe present a perturbative result for the tem...
We analyze the effects of a nonlinear cubic perturbation on the delta-kicked rotor. We consider two ...
10.1103/PhysRevE.88.052919Physical Review E - Statistical, Nonlinear, and Soft Matter Physics885-PLE...
Long-lasting exponential quantum spreading was recently found in a simple but very rich dynamical mo...
We experimentally verify the analytical expressions that exist for the diffusion rate in the quantum...
We study the resonances of the quantum kicked rotor subjected to an excitation that follows an aperi...
In this work we apply the formalism developed in [Phys. Rev. A 77, 043628 (2008)] to diffe...
Kicked rotor is a paradigmatic model for classical and quantum chaos in time-dependent Hamiltonian s...
We present experimental measurements of the mean energy in the vicinity of the first and second quan...
We review the theoretical model and experimental realization of the atom optics δ-kicked...
We present experimental measurements of the mean energy for the atom optics kicked rotor after just ...
We address the issue of fluctuations, about an exponential line shape, in a pair of one-dimensional ...
We study a system of two atomic quantum kicked rotors with hard-core interaction. This system shows ...
We analytically investigate the analogy between a standard continuous-time quantum walk in one dimen...
In quantum resonance, the atom optics kicked rotor, if it underlies a series of kicks, performs a ra...
peer reviewedaudience: researcher, professional, studentWe present a perturbative result for the tem...
We analyze the effects of a nonlinear cubic perturbation on the delta-kicked rotor. We consider two ...
10.1103/PhysRevE.88.052919Physical Review E - Statistical, Nonlinear, and Soft Matter Physics885-PLE...
Long-lasting exponential quantum spreading was recently found in a simple but very rich dynamical mo...
We experimentally verify the analytical expressions that exist for the diffusion rate in the quantum...
We study the resonances of the quantum kicked rotor subjected to an excitation that follows an aperi...
In this work we apply the formalism developed in [Phys. Rev. A 77, 043628 (2008)] to diffe...
Kicked rotor is a paradigmatic model for classical and quantum chaos in time-dependent Hamiltonian s...
We present experimental measurements of the mean energy in the vicinity of the first and second quan...
We review the theoretical model and experimental realization of the atom optics δ-kicked...
We present experimental measurements of the mean energy for the atom optics kicked rotor after just ...
We address the issue of fluctuations, about an exponential line shape, in a pair of one-dimensional ...
We study a system of two atomic quantum kicked rotors with hard-core interaction. This system shows ...
We analytically investigate the analogy between a standard continuous-time quantum walk in one dimen...