We present mean energy measurements for the atom optics kicked rotor as the kicking period tends to zero. A narrow resonance is observed marked by quadratic energy growth, in parallel with a complete freezing of the energy absorption away from the resonance peak. Both phenomena are explained by classical means, taking proper account of the atoms' initial momentum distribution
In this thesis we investigate quantum resonant effects in the atom-optical ὁ-kicked accelerator. Usi...
We consider a Bose-Einstein condensate which is split into two momentum components and then “kicked"...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
We present experimental measurements of the mean energy for the atom optics kicked rotor after just ...
We experimentally verify the analytical expressions that exist for the diffusion rate in the quantum...
The effect of pulse train noise on the energy peaks at quantum resonance seen in the Atom Optics Kic...
We present experimental measurements of the mean energy in the vicinity of the first and second quan...
We show that the quantum fidelity is accessible to cold atom experiments for a large class of evolut...
We present the results of experiments performed on cold caesium in a pulsed sinusoidal optical poten...
We review the theoretical model and experimental realization of the atom optics δ-kicked...
We review the concept and applications of a semiclassical (epsilon-classical or pseudoclassical) app...
In quantum resonance, the atom optics kicked rotor, if it underlies a series of kicks, performs a ra...
We study the fate of dynamical localization of two quantum kicked rotors with contact interaction, w...
This thesis investigates quantum transport in the energy space of two paradigm systems of quantum ch...
The quantum kicked rotor is studied experimentally in an atom-optics setting, where we observe the c...
In this thesis we investigate quantum resonant effects in the atom-optical ὁ-kicked accelerator. Usi...
We consider a Bose-Einstein condensate which is split into two momentum components and then “kicked"...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
We present experimental measurements of the mean energy for the atom optics kicked rotor after just ...
We experimentally verify the analytical expressions that exist for the diffusion rate in the quantum...
The effect of pulse train noise on the energy peaks at quantum resonance seen in the Atom Optics Kic...
We present experimental measurements of the mean energy in the vicinity of the first and second quan...
We show that the quantum fidelity is accessible to cold atom experiments for a large class of evolut...
We present the results of experiments performed on cold caesium in a pulsed sinusoidal optical poten...
We review the theoretical model and experimental realization of the atom optics δ-kicked...
We review the concept and applications of a semiclassical (epsilon-classical or pseudoclassical) app...
In quantum resonance, the atom optics kicked rotor, if it underlies a series of kicks, performs a ra...
We study the fate of dynamical localization of two quantum kicked rotors with contact interaction, w...
This thesis investigates quantum transport in the energy space of two paradigm systems of quantum ch...
The quantum kicked rotor is studied experimentally in an atom-optics setting, where we observe the c...
In this thesis we investigate quantum resonant effects in the atom-optical ὁ-kicked accelerator. Usi...
We consider a Bose-Einstein condensate which is split into two momentum components and then “kicked"...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...