We demonstrate runaway evaporative cooling directly with a tightly confining optical-dipole trap and achieve fast production of condensates of 1.5×105 87Rb atoms. Our scheme uses a misaligned crossed-beam far off-resonance optical-dipole trap (MACRO-FORT). It is characterized by independent control of the trap confinement and depth allowing forced all-optical evaporation in the runaway regime. Although our configuration is particularly well suited to the case of 87Rb atoms in a 1565 nm optical trap, where an efficient initial loading is possible, our scheme is general and will allow all-optical evaporative cooling at constant stiffness for every optically trappable atomic or even molecular species
We present an optical cooling scheme that relies on hyperfine dark states to enhance loading and coo...
We present an optical cooling scheme that relies on hyperfine dark states to enhance loading and coo...
In 1925, Einstein predicted the condensation of bosons into the ground state of the system for low (...
International audienceForced evaporative cooling in a far-off-resonance optical dipole trap is prove...
14 pagesWe suggest different simple schemes to efficiently load and evaporate a ''dimple'' crossed d...
We present a compact experimental apparatus for Bose-Einstein condensation of 87Rb in the |F = 2, ...
Cold ensembles and Bose-Einstein condensates of alkali atoms in optical dipole potentials have been ...
We report a simple method for the creation of Bose-Einstein condensates of 85Rb by direct evaporatio...
This Thesis contains details of the construction and characterisation of a compact apparatus for the...
The construction of an apparatus capable of producing Bose-Einstein condensates marks a significant ...
We demonstrate a technique for cooling a degenerate Fermi gas in a crossed-beam optical dipole trap,...
The construction of an apparatus capable of producing Bose-Einstein condensates marks a significant ...
WOS:000309079500006International audienceWe report the realization of a Bose-Einstein condensate of ...
13 pages, 8 figuresInternational audienceWe describe an experiment to produce 87Rb Bose-Einstein con...
We report on cooling of an atomic cesium gas closely above an evanescent-wave. Our first evaporation...
We present an optical cooling scheme that relies on hyperfine dark states to enhance loading and coo...
We present an optical cooling scheme that relies on hyperfine dark states to enhance loading and coo...
In 1925, Einstein predicted the condensation of bosons into the ground state of the system for low (...
International audienceForced evaporative cooling in a far-off-resonance optical dipole trap is prove...
14 pagesWe suggest different simple schemes to efficiently load and evaporate a ''dimple'' crossed d...
We present a compact experimental apparatus for Bose-Einstein condensation of 87Rb in the |F = 2, ...
Cold ensembles and Bose-Einstein condensates of alkali atoms in optical dipole potentials have been ...
We report a simple method for the creation of Bose-Einstein condensates of 85Rb by direct evaporatio...
This Thesis contains details of the construction and characterisation of a compact apparatus for the...
The construction of an apparatus capable of producing Bose-Einstein condensates marks a significant ...
We demonstrate a technique for cooling a degenerate Fermi gas in a crossed-beam optical dipole trap,...
The construction of an apparatus capable of producing Bose-Einstein condensates marks a significant ...
WOS:000309079500006International audienceWe report the realization of a Bose-Einstein condensate of ...
13 pages, 8 figuresInternational audienceWe describe an experiment to produce 87Rb Bose-Einstein con...
We report on cooling of an atomic cesium gas closely above an evanescent-wave. Our first evaporation...
We present an optical cooling scheme that relies on hyperfine dark states to enhance loading and coo...
We present an optical cooling scheme that relies on hyperfine dark states to enhance loading and coo...
In 1925, Einstein predicted the condensation of bosons into the ground state of the system for low (...