The sensitivity of the fidelity in the kicked rotor to an acceleration is experimentally and theoretically investigated. We used a Bose-Einstein condensate exposed to a sequence of pulses from a standing light wave followed by a single reversal pulse in which the standing wave was shifted by half a wavelength. The features of the fidelity "spectrum" as a function of acceleration are presented. This work may find applications in the measurement of temperature of an ultracold atomic sample
Light-pulse atom interferometers have been used as quantum inertial sensors and for precision tests ...
The three experiments described in this thesis investigate fundamental properties of ultracold atoms...
We propose a method to characterize the ultra-narrow momentum distribution of atomic gases by employ...
In this thesis we investigate quantum resonant effects in the atom-optical ὁ-kicked accelerator. Usi...
We show that the quantum fidelity is accessible to cold atom experiments for a large class of evolut...
International audienceThis experimental work demonstrates the importance of finite-width effects in ...
This thesis reports on the experimental investigation of several applications of the atom-optical qu...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
In this thesis, the dynamics of cold, trapped atomic gases are investigated, and the prospects for e...
Kicked atoms under a constant Stark or gravity field are investigated for experimental setups with c...
Kicked atoms under a constant Stark or gravity field are investigated for experimental setups with c...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
This thesis is devoted to the study of some theoretical aspects of the problem of Quantum Accelerato...
The effect of pulse train noise on the energy peaks at quantum resonance seen in the Atom Optics Kic...
We experimentally measured the ultra-narrow momentum width of an optical trapped Bose-Einstein conde...
Light-pulse atom interferometers have been used as quantum inertial sensors and for precision tests ...
The three experiments described in this thesis investigate fundamental properties of ultracold atoms...
We propose a method to characterize the ultra-narrow momentum distribution of atomic gases by employ...
In this thesis we investigate quantum resonant effects in the atom-optical ὁ-kicked accelerator. Usi...
We show that the quantum fidelity is accessible to cold atom experiments for a large class of evolut...
International audienceThis experimental work demonstrates the importance of finite-width effects in ...
This thesis reports on the experimental investigation of several applications of the atom-optical qu...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
In this thesis, the dynamics of cold, trapped atomic gases are investigated, and the prospects for e...
Kicked atoms under a constant Stark or gravity field are investigated for experimental setups with c...
Kicked atoms under a constant Stark or gravity field are investigated for experimental setups with c...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
This thesis is devoted to the study of some theoretical aspects of the problem of Quantum Accelerato...
The effect of pulse train noise on the energy peaks at quantum resonance seen in the Atom Optics Kic...
We experimentally measured the ultra-narrow momentum width of an optical trapped Bose-Einstein conde...
Light-pulse atom interferometers have been used as quantum inertial sensors and for precision tests ...
The three experiments described in this thesis investigate fundamental properties of ultracold atoms...
We propose a method to characterize the ultra-narrow momentum distribution of atomic gases by employ...