Dipole force traps for dark-field seeking states of atoms and molecules require regions of low intensity that are completely surrounded by a brighter optical field. Confocal cavities allow the resonant enhancement of these interesting transverse mode superpositions, and put deep far-off-resonance traps within reach of low-power diode lasers. In this paper, we show how an array of dark-field rings may be created simply using a single Gaussian beam. Such a geometry lends itself to the study of toroidal Bose-Einstein condensates. (C) 2002 Elsevier Science B.V. All rights reserved.</p
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
Interferometric measurements with matter waves are established techniques for sensitive gravimetry, ...
A toroidal dipole represents an often overlooked electromagnetic excitation distinct from the standa...
Dipole force traps for dark-field seeking states of atoms and molecules require regions of low inten...
We theoretically investigate the use of red-detuned Laguerre-Gaussian (LG) laser beams of varying az...
We have theoretically constructed light fields that can generate optical potentials representing rec...
We investigate theoretically an original route to achieve Bose-Einstein condensation using dark powe...
4 pages, submitted to PRAInternational audienceWe propose a new geometry of optical lattice for cold...
We analyze the resonant cavity enhancement of a hollow "optical bottle beam" for the dipole-force tr...
We demonstrate the generation of highly adaptable and reproducible dark optical ring lattices, which...
We propose that micrometer-sized atom traps can be created using the optical dipole force between th...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
A ring of sub-wavelength spaced dipole-coupled quantum emitters features extraordinary optical prope...
We present a novel approach for the optical manipulation of neutral atoms in annular light structure...
The bottle beam configuration is a light field created by the interference of a pair of Laguerre–Gau...
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
Interferometric measurements with matter waves are established techniques for sensitive gravimetry, ...
A toroidal dipole represents an often overlooked electromagnetic excitation distinct from the standa...
Dipole force traps for dark-field seeking states of atoms and molecules require regions of low inten...
We theoretically investigate the use of red-detuned Laguerre-Gaussian (LG) laser beams of varying az...
We have theoretically constructed light fields that can generate optical potentials representing rec...
We investigate theoretically an original route to achieve Bose-Einstein condensation using dark powe...
4 pages, submitted to PRAInternational audienceWe propose a new geometry of optical lattice for cold...
We analyze the resonant cavity enhancement of a hollow "optical bottle beam" for the dipole-force tr...
We demonstrate the generation of highly adaptable and reproducible dark optical ring lattices, which...
We propose that micrometer-sized atom traps can be created using the optical dipole force between th...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
A ring of sub-wavelength spaced dipole-coupled quantum emitters features extraordinary optical prope...
We present a novel approach for the optical manipulation of neutral atoms in annular light structure...
The bottle beam configuration is a light field created by the interference of a pair of Laguerre–Gau...
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
Interferometric measurements with matter waves are established techniques for sensitive gravimetry, ...
A toroidal dipole represents an often overlooked electromagnetic excitation distinct from the standa...