The effect of decoherence, induced by spontaneous emission, on the dynamics of cold atoms periodically kicked by an optical lattice is experimentally and theoretically studied. Ideally, the mean energy growth is essentially unaffected by weak decoherence, but the resonant momentum distributions are fundamentally altered. It is shown that experiments are inevitably sensitive to certain nontrivial features of these distributions, in a way that explains the puzzle of the observed enhancement of resonances by decoherence [Phys. Rev. Lett. 87, 074102 (2001)]. This clarifies both the nature of the coherent evolution, and the way in which decoherence disrupts it
We investigate decoherence in atom interferometry due to scattering from a background gas and show t...
One of the most pertinent problems in the debate on non-trivial quantum effects in biology concerns ...
The results of some simple calculations designed to study quantum decoherence are presented. The phy...
The effect of decoherence, induced by spontaneous emission, on the dynamics of cold atoms periodical...
Abstract This work proposes a series of quantum experiments that can, at least in principle, allow f...
We describe a new mechanism of decoherence in excited atoms as a result of thermal particles scatter...
In this thesis, I report on experiments with cold 85Rb atoms in a far-detuned one-dimensional optica...
It is proposed that the atomic optical system of an ytterbium atom in a time-dependent optical stand...
By means of two simple examples: phase and amplitude damping, the impact of decoherence on the dynam...
Cold atoms in optical potentials provide an ideal test bed to explore quantum nonlinear dynamics. At...
We measure the decoherence of a spatially separated atomic superposition due to spontaneous photon s...
Abstract. We discuss decoherence in discrete-time quantum walks in terms of a phenomenological model...
We investigate decoherence in the quantum kicked rotator (modelling cold atoms in a pulsed optical f...
In the last years there has been important progress in theoretical description of the dynamics of qu...
We analyze the notion of quantum coherence in an interference experiment. We let the phase shifts fl...
We investigate decoherence in atom interferometry due to scattering from a background gas and show t...
One of the most pertinent problems in the debate on non-trivial quantum effects in biology concerns ...
The results of some simple calculations designed to study quantum decoherence are presented. The phy...
The effect of decoherence, induced by spontaneous emission, on the dynamics of cold atoms periodical...
Abstract This work proposes a series of quantum experiments that can, at least in principle, allow f...
We describe a new mechanism of decoherence in excited atoms as a result of thermal particles scatter...
In this thesis, I report on experiments with cold 85Rb atoms in a far-detuned one-dimensional optica...
It is proposed that the atomic optical system of an ytterbium atom in a time-dependent optical stand...
By means of two simple examples: phase and amplitude damping, the impact of decoherence on the dynam...
Cold atoms in optical potentials provide an ideal test bed to explore quantum nonlinear dynamics. At...
We measure the decoherence of a spatially separated atomic superposition due to spontaneous photon s...
Abstract. We discuss decoherence in discrete-time quantum walks in terms of a phenomenological model...
We investigate decoherence in the quantum kicked rotator (modelling cold atoms in a pulsed optical f...
In the last years there has been important progress in theoretical description of the dynamics of qu...
We analyze the notion of quantum coherence in an interference experiment. We let the phase shifts fl...
We investigate decoherence in atom interferometry due to scattering from a background gas and show t...
One of the most pertinent problems in the debate on non-trivial quantum effects in biology concerns ...
The results of some simple calculations designed to study quantum decoherence are presented. The phy...