We give an overview of our experiments on the quantum and classical dynamics of atoms in an amplitude modulated standing wave - the quantum driven pendulum. Atoms are prepared in a magneto-optic trap or as a dilute Bose-Einstein condensate and subjected to a far detuned optical standing wave. We observe the occurrence of a bifurcation sequence in the parameter space of the quantum driven pendulum. We also observe dynamical tunnelling between two classically isolated states of motion. The tunnelling process is coherent and we see more than eight tunnelling periods
Abstract. The transport of ultra-cold atoms in magneto-optical potentials provides a clean setting i...
We present experimental results for the dynamics of cold atoms in a far detuned amplitude-modulated ...
In this paper theoretical work on classical and quantum nonlinear dynamics of cold atoms is reported...
Cold atoms in optical potentials provide an ideal test bed to explore quantum nonlinear dynamics. At...
Cold atoms in optical potentials provide an ideal test bed to explore quantum nonlinear dynamics. At...
The divergence of quantum and classical descriptions of particle motion is clearly apparent in quant...
The divergence of quantum and classical descriptions of particle motion is clearly apparent in quant...
Cold rubidium atoms are subjected to an amplitude-modulated far-detuned standing wave of light to fo...
Cold rubidium atoms are subjected to an amplitude-modulated far-detuned standing wave of light to fo...
Summary form only given. We represent the first experiment evidence of dynamic tunneling of ultra-co...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
Abstract. The transport of ultra-cold atoms in magneto-optical potentials provides a clean setting i...
We present experimental results for the dynamics of cold atoms in a far detuned amplitude-modulated ...
In this paper theoretical work on classical and quantum nonlinear dynamics of cold atoms is reported...
Cold atoms in optical potentials provide an ideal test bed to explore quantum nonlinear dynamics. At...
Cold atoms in optical potentials provide an ideal test bed to explore quantum nonlinear dynamics. At...
The divergence of quantum and classical descriptions of particle motion is clearly apparent in quant...
The divergence of quantum and classical descriptions of particle motion is clearly apparent in quant...
Cold rubidium atoms are subjected to an amplitude-modulated far-detuned standing wave of light to fo...
Cold rubidium atoms are subjected to an amplitude-modulated far-detuned standing wave of light to fo...
Summary form only given. We represent the first experiment evidence of dynamic tunneling of ultra-co...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
We perform a numerical analysis of the effects of a nonlinear perturbation on the quantum dynamics o...
Abstract. The transport of ultra-cold atoms in magneto-optical potentials provides a clean setting i...
We present experimental results for the dynamics of cold atoms in a far detuned amplitude-modulated ...
In this paper theoretical work on classical and quantum nonlinear dynamics of cold atoms is reported...