We study the mutual interaction of a Bose-Einstein condensed gas with a single mode of a high-finesse optical cavity. We show how the cavity transmission reflects condensate properties, and calculate the self-consistent intracavity light field and condensate evolution. Solving the coupled condensate-cavity equations we find that while falling through the cavity, the condensate is adiabatically transfered into the ground state of the periodic optical potential. This allows time-dependent nondestructive measurements on Bose-Einstein condensates, with intriguing prospects for subsequent controlled manipulation
Bose-Einstein condensates of dilute gases provide a rich and versatile platform to study both single...
We investigate a nondestructive measurement technique to monitor Josephson-like oscillations between...
We theoretically examine collective excitations of an optically driven atomic Bose-Einstein condensa...
We study the mutual interaction of a Bose-Einstein condensed gas with a single mode of a high-finess...
A Bose-Einstein condensate is dispersively coupled to a single mode of an ultra-high finesse optical...
In recent years, significant progress has been achieved in manipulating matter with light, and light...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
We investigate the dynamics of a Bose-Einstein condensate held in an optical lattice under the influ...
We report on the observation of quantum coherence of Bose–Einstein condensed photons in an optically...
We demonstrate that a photon blockade effect exists in the intracavity coherent photoassociation of ...
We investigate a non-destructive measurement technique to monitor Josephson-like oscillations betwee...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2001.Includes bibliographi...
A Bose-Einstein condensate represents the most 'classical' form of a matter wave, just as an optical...
We study the time-dependent dynamics of a Bose-Einstein condensate trapped in an optical lattice. Mo...
Based on the Lindblad master equation approach we obtain a detailed microscopic model of photons in ...
Bose-Einstein condensates of dilute gases provide a rich and versatile platform to study both single...
We investigate a nondestructive measurement technique to monitor Josephson-like oscillations between...
We theoretically examine collective excitations of an optically driven atomic Bose-Einstein condensa...
We study the mutual interaction of a Bose-Einstein condensed gas with a single mode of a high-finess...
A Bose-Einstein condensate is dispersively coupled to a single mode of an ultra-high finesse optical...
In recent years, significant progress has been achieved in manipulating matter with light, and light...
We study cavity quantum electrodynamics of Bose-condensed atoms that are subjected to continuous mon...
We investigate the dynamics of a Bose-Einstein condensate held in an optical lattice under the influ...
We report on the observation of quantum coherence of Bose–Einstein condensed photons in an optically...
We demonstrate that a photon blockade effect exists in the intracavity coherent photoassociation of ...
We investigate a non-destructive measurement technique to monitor Josephson-like oscillations betwee...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2001.Includes bibliographi...
A Bose-Einstein condensate represents the most 'classical' form of a matter wave, just as an optical...
We study the time-dependent dynamics of a Bose-Einstein condensate trapped in an optical lattice. Mo...
Based on the Lindblad master equation approach we obtain a detailed microscopic model of photons in ...
Bose-Einstein condensates of dilute gases provide a rich and versatile platform to study both single...
We investigate a nondestructive measurement technique to monitor Josephson-like oscillations between...
We theoretically examine collective excitations of an optically driven atomic Bose-Einstein condensa...