Under certain conditions, the quantum delta-kicked harmonic oscillator displays quantum resonances. We consider an atom-optical realization of the delta-kicked harmonic oscillator and present a theoretical discussion of the quantum resonances that could be observed in such a system. Having outlined our model of the physical system we derive the values at which quantum resonances occur and relate these to potential experimental parameters. We discuss the observable effects of the quantum resonances using the results of numerical simulations. We develop a physical explanation for the quantum resonances based on symmetries shared between the classical phase space and the quantum-mechanical time evolution operator. We explore the evolution of c...
We experimentally investigate the atom optics kicked particle at quantum resonance using finite dura...
We present experimental measurements of the mean energy in the vicinity of the first and second quan...
Atom interferometers are a useful tool for precision measurements of fundamental physical phenomena,...
We consider resonant dynamics in a dilute atomic gas falling under gravity through a periodically pu...
In this thesis we investigate quantum resonant effects in the atom-optical ὁ-kicked accelerator. Usi...
We review the theoretical model and experimental realization of the atom optics δ-kicked...
We propose an efficient procedure for numerically evolving the quantum dynamics of delta-kicked harm...
We consider the atom-optical delta-kicked accelerator when the initial momentum distribution is symm...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
Scope and Method of Study: The purpose of this research was to experimentally study quantum dynamics...
Scope and Method of Study: A purpose of this research was to study the scaling behavior of resonance...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
This thesis investigates quantum transport in the energy space of two paradigm systems of quantum ch...
We investigate the effect of temperature on resonant and antiresonant dynamics in a dilute atomic ga...
The quantum resonances occurring with delta-kicked particles are studied with the help of a fictitio...
We experimentally investigate the atom optics kicked particle at quantum resonance using finite dura...
We present experimental measurements of the mean energy in the vicinity of the first and second quan...
Atom interferometers are a useful tool for precision measurements of fundamental physical phenomena,...
We consider resonant dynamics in a dilute atomic gas falling under gravity through a periodically pu...
In this thesis we investigate quantum resonant effects in the atom-optical ὁ-kicked accelerator. Usi...
We review the theoretical model and experimental realization of the atom optics δ-kicked...
We propose an efficient procedure for numerically evolving the quantum dynamics of delta-kicked harm...
We consider the atom-optical delta-kicked accelerator when the initial momentum distribution is symm...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
Scope and Method of Study: The purpose of this research was to experimentally study quantum dynamics...
Scope and Method of Study: A purpose of this research was to study the scaling behavior of resonance...
Several quantum phenomena have been experimentally investigated using the system of ultra-cold atoms...
This thesis investigates quantum transport in the energy space of two paradigm systems of quantum ch...
We investigate the effect of temperature on resonant and antiresonant dynamics in a dilute atomic ga...
The quantum resonances occurring with delta-kicked particles are studied with the help of a fictitio...
We experimentally investigate the atom optics kicked particle at quantum resonance using finite dura...
We present experimental measurements of the mean energy in the vicinity of the first and second quan...
Atom interferometers are a useful tool for precision measurements of fundamental physical phenomena,...