We introduce a scheme for creating continuous variable entanglement between an atomic beam and an optical field, by using squeezed light to outcouple atoms from a Bose-Einstein condensate via a Raman transition. We model the full multimode dynamics of the atom laser beam and the squeezed optical field and show that, with appropriate two-photon detuning and two-photon Rabi frequency, the transmitted light is entangled in amplitude and phase with the outcoupled atom laser beam. The degree of entanglement is controllable via changes in the two-photon Rabi frequency of the outcoupling process
We investigate how efficiently two identical two-level atoms can be entangled by resonant dipole-dip...
Neutral atoms are good candidates for quantum information processing. This thesis reports experiment...
We suggest a technique to induce effective, controllable interactions between atoms that is based on...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
The development of the Raman atom laser promises to make available new techniques for accessing and ...
We propose to produce pulses of strongly squeezed light by Raman scattering of a strong laser pulse ...
We theoretically investigate the generation of atom-light entanglement via Raman superradiance in an...
We propose using spontaneous Raman scattering from an optically driven Bose-Einstein condensate as a...
We discuss the generation and monitoring of durable atomic entangled state via Raman-type process, w...
We present results on a Raman laser-system that resonantly drives a closed two-photon transition be...
We propose and analyze a scheme for measuring the quadrature statistics of an atom laser beam using ...
We propose and analyse a scheme for measuring the quadrature statistics of an atom laser beam using ...
The Raman atom-laser outcoupler, which is based on optical Bose-enhancement, provides a coherent way...
We theoretically study a pulsed stimulated two-photon Raman outcoupler for an atom laser using a ful...
We propose a scheme for entangling the motional mode of a trapped atom with a propagating light fiel...
We investigate how efficiently two identical two-level atoms can be entangled by resonant dipole-dip...
Neutral atoms are good candidates for quantum information processing. This thesis reports experiment...
We suggest a technique to induce effective, controllable interactions between atoms that is based on...
We examine the properties of an atom laser produced by outcoupling from a Bose-Einstein condensate w...
The development of the Raman atom laser promises to make available new techniques for accessing and ...
We propose to produce pulses of strongly squeezed light by Raman scattering of a strong laser pulse ...
We theoretically investigate the generation of atom-light entanglement via Raman superradiance in an...
We propose using spontaneous Raman scattering from an optically driven Bose-Einstein condensate as a...
We discuss the generation and monitoring of durable atomic entangled state via Raman-type process, w...
We present results on a Raman laser-system that resonantly drives a closed two-photon transition be...
We propose and analyze a scheme for measuring the quadrature statistics of an atom laser beam using ...
We propose and analyse a scheme for measuring the quadrature statistics of an atom laser beam using ...
The Raman atom-laser outcoupler, which is based on optical Bose-enhancement, provides a coherent way...
We theoretically study a pulsed stimulated two-photon Raman outcoupler for an atom laser using a ful...
We propose a scheme for entangling the motional mode of a trapped atom with a propagating light fiel...
We investigate how efficiently two identical two-level atoms can be entangled by resonant dipole-dip...
Neutral atoms are good candidates for quantum information processing. This thesis reports experiment...
We suggest a technique to induce effective, controllable interactions between atoms that is based on...