We theoretically study a pulsed stimulated two-photon Raman outcoupler for an atom laser using a full three-dimensional description. A finite-temperature trapped Bose-condensed atomic gas is treated self-consistently by the Hartree-Fock-Bogoliubov equations. The model is closely related to a recent experiment on optical outcoupling [E.W. Hagley et al., Science 283, 1706 (1999)]. We analyze the momentum distribution of the output atoms and show how the output beam may be used as a probe of the quantum state for the trapped atomic gas and how it could be engineered and controlled in a nonlinear way
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We theoretically study a pulsed stimulated two-photon Raman outcoupler for an atom laser using a ful...
We study the properties of an atom laser beam derived from a Bose-Einstein condensate using three di...
The Raman atom-laser outcoupler, which is based on optical Bose-enhancement, provides a coherent way...
Atom lasers have been demonstrated in both pulsed and semi-continuous modes. The dynamics of these d...
The development of the Raman atom laser promises to make available new techniques for accessing and ...
We propose and analyze a scheme for measuring the quadrature statistics of an atom laser beam using ...
We introduce a scheme for creating continuous variable entanglement between an atomic beam and an op...
We investigate the spatial structure and temporal dynamics created in a Bose-Einstein condensate by ...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
The atom laser, a bright, coherent matter wave derived from a Bose-Einstein condensate, holds great ...
We present results on a Raman laser-system that resonantly drives a closed two-photon transition be...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We theoretically study a pulsed stimulated two-photon Raman outcoupler for an atom laser using a ful...
We study the properties of an atom laser beam derived from a Bose-Einstein condensate using three di...
The Raman atom-laser outcoupler, which is based on optical Bose-enhancement, provides a coherent way...
Atom lasers have been demonstrated in both pulsed and semi-continuous modes. The dynamics of these d...
The development of the Raman atom laser promises to make available new techniques for accessing and ...
We propose and analyze a scheme for measuring the quadrature statistics of an atom laser beam using ...
We introduce a scheme for creating continuous variable entanglement between an atomic beam and an op...
We investigate the spatial structure and temporal dynamics created in a Bose-Einstein condensate by ...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
The atom laser, a bright, coherent matter wave derived from a Bose-Einstein condensate, holds great ...
We present results on a Raman laser-system that resonantly drives a closed two-photon transition be...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...