We investigate the quantum measurement noise effects on the dynamics of an atomic Bose lattice gas inside an optical resonator. We describe the dynamics by means of a hybrid model consisting of a Bose-Hubbard Hamiltonian for the atoms and a Heisenberg-Langevin equation for the lossy cavity-field mode. We assume that the atoms are prepared initially in the ground state of the lattice Hamiltonian and then start to interact with the cavity mode. We show that the cavity-field fluctuations originating from the dissipative outcoupling of photons from the resonator lead to vastly different effects in the different possible ground-state phases, i.e., the superfluid, the supersolid, the Mott and charge-density-wave phases. In the former two phases w...
We study the collective optical response of an atomic ensemble confined within a single-mode optical...
The understanding of quantum many-body physics is the key to develop new quantum technologies includ...
We investigate a nondestructive measurement technique to monitor Josephson-like oscillations between...
We investigate a paradigm example of cavity quantum electrodynamics with many body systems: an ultra...
We study the time-dependent dynamics of a Bose-Einstein condensate trapped in an optical lattice. Mo...
doi:10.1088/1367-2630/10/4/045002 Abstract. We investigate a paradigm example of cavity quantum elec...
The work presented in this dissertation concerns dynamics of Rydberg atom lattices in the presence o...
Resonant excitation of an inhomogeneously broadened ensemble of two-level atoms (TLA) by a stochasti...
We study the quantum dynamics of N coherently driven two-level atoms coupled to an optical resonator...
When N driven atoms emit in phase into a high-Q cavity mode, the intracavity field generated by coll...
In this thesis we study the quantum statistical properties of noise in several quantum optical syste...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
This dissertation contains a study of ultracold atoms in optical cavities. We particularly focus on ...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems similar to solid...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We study the collective optical response of an atomic ensemble confined within a single-mode optical...
The understanding of quantum many-body physics is the key to develop new quantum technologies includ...
We investigate a nondestructive measurement technique to monitor Josephson-like oscillations between...
We investigate a paradigm example of cavity quantum electrodynamics with many body systems: an ultra...
We study the time-dependent dynamics of a Bose-Einstein condensate trapped in an optical lattice. Mo...
doi:10.1088/1367-2630/10/4/045002 Abstract. We investigate a paradigm example of cavity quantum elec...
The work presented in this dissertation concerns dynamics of Rydberg atom lattices in the presence o...
Resonant excitation of an inhomogeneously broadened ensemble of two-level atoms (TLA) by a stochasti...
We study the quantum dynamics of N coherently driven two-level atoms coupled to an optical resonator...
When N driven atoms emit in phase into a high-Q cavity mode, the intracavity field generated by coll...
In this thesis we study the quantum statistical properties of noise in several quantum optical syste...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
This dissertation contains a study of ultracold atoms in optical cavities. We particularly focus on ...
Ultracold bosonic gases in optical lattices are strongly correlated quantum systems similar to solid...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We study the collective optical response of an atomic ensemble confined within a single-mode optical...
The understanding of quantum many-body physics is the key to develop new quantum technologies includ...
We investigate a nondestructive measurement technique to monitor Josephson-like oscillations between...