This thesis focuses on theoretical quantum optics, with special emphasis on developing protocols in which engineered vacuum forces enable one to construct hybrid systems. In these systems, atoms are combined with solid-state devices in order to take advantage of their unique properties such as long coherence times of atoms and flexibility, tunability, scalability, and fast response offered by solid-state systems. Special attention is given to the study of atom-surface interactions with Rydberg atoms, where exact Fano-type diagonalization of the interaction Hamiltonian is obtained showing that, not only do Rydberg atoms suffer energy shifts, the presence of a surface leads to an alteration and admixture of the unperturbed eigenstates. Of...
We investigate the time-dependent Casimir-Polder potential of a polarizable two-level atom placed ne...
This thesis contributes to the quantum platform based on an atom chip. In our atom chip, atoms are t...
A principal goal of distributed quantum processing is the ability to generate, manipulate, and trans...
Ultracold atoms are used to study various fundamental physics, including many-body system, nonequili...
© 2018 American Physical Society. We present a formalism based on first principles of quantum electr...
This thesis is a theoretical study of the behavior of electrons in atoms and molecules subjected to ...
In this work the Casimir-Polder interaction energy between a rubidium atom and a disordered graphene...
We study the optomechanical coupling of a oscillating effective mirror with a Rydberg atomic gas, me...
Rydberg atoms are highly excited atoms with intriguing properties. In the framework of quantum elect...
Recent developments in the study of ultracold Rydberg gases demand an advanced level of experimental...
Scientific development requires profound understandings of micromechanical and nanomechanical system...
We investigate two different coupling schemes between a nano-scale mechanical resonator and one-elec...
We investigate the thermal Casimir-Polder (CP) potential of 87Rb atoms in Rydberg nS-states near sin...
Dans ce mémoire, nous avons étudions le comportement d'atomes de rubidium 87 excités dans des états ...
In this work the Casimir-Polder interaction energy between a rubidium atom and a disordered graphene...
We investigate the time-dependent Casimir-Polder potential of a polarizable two-level atom placed ne...
This thesis contributes to the quantum platform based on an atom chip. In our atom chip, atoms are t...
A principal goal of distributed quantum processing is the ability to generate, manipulate, and trans...
Ultracold atoms are used to study various fundamental physics, including many-body system, nonequili...
© 2018 American Physical Society. We present a formalism based on first principles of quantum electr...
This thesis is a theoretical study of the behavior of electrons in atoms and molecules subjected to ...
In this work the Casimir-Polder interaction energy between a rubidium atom and a disordered graphene...
We study the optomechanical coupling of a oscillating effective mirror with a Rydberg atomic gas, me...
Rydberg atoms are highly excited atoms with intriguing properties. In the framework of quantum elect...
Recent developments in the study of ultracold Rydberg gases demand an advanced level of experimental...
Scientific development requires profound understandings of micromechanical and nanomechanical system...
We investigate two different coupling schemes between a nano-scale mechanical resonator and one-elec...
We investigate the thermal Casimir-Polder (CP) potential of 87Rb atoms in Rydberg nS-states near sin...
Dans ce mémoire, nous avons étudions le comportement d'atomes de rubidium 87 excités dans des états ...
In this work the Casimir-Polder interaction energy between a rubidium atom and a disordered graphene...
We investigate the time-dependent Casimir-Polder potential of a polarizable two-level atom placed ne...
This thesis contributes to the quantum platform based on an atom chip. In our atom chip, atoms are t...
A principal goal of distributed quantum processing is the ability to generate, manipulate, and trans...