Dark states of dressed Bose-Einstein condensates
arXiv:cond-mat/9905266 · doi:10.1103/PhysRevA.60.4006
Abstract
We combine the ideas of dressed Bose-Einstein condensates, where an intracavity optical field allows one to design coupled, multicomponent condensates, and of dark states of quantum systems, to generate a full quantum entanglement between two matter waves and two optical waves. While the matter waves are macroscopically populated, the two optical modes share a single photon. As such, this system offers a way to influence the behaviour of a macroscopic quantum system via a microscopic ``knob''.
6 pages, no figure
Cited by in corpus (6)
- Dissipative dynamics of Bose condensates in optical cavities
- Simulating and investigating various dynamic aspects of the -related hydrogen bond model
- Collapse of dark states in Tavis-Cummings model
- Description of the non-Markovian dynamics of atoms in terms of a pure state
- Studying the effect of phonon coherence and inflow on hydrogen bond formation in the cluster
- Simulating and comparing the quantum and classical mechanical motion of two hydrogen atoms