In this Letter we report the investigation of transport and static properties of a Bose-Einstein condensate in a large-spaced optical lattice. The lattice spacing can be easily tuned starting from few micrometers by adjusting the relative angle of two partially reflective mirrors. We have performed in-situ imaging of the atoms trapped in the potential wells of a 20 um spaced lattice. For a lattice spacing of 10 um we have studied the transport properties of the system and the interference pattern after expansion, evidencing quite different results with respect to the physics of BECs in ordinary near-infrared standing wave lattices, owing to the different length and energy scales.
Bose-Einstein condensate in an optical lattice with tunable spacing: transport and static properties / L. Fallani; C. Fort; J. E. Lye; M. Inguscio. - In: OPTICS EXPRESS. - ISSN 1094-4087. - ELETTRONICO. - 13:(2005), pp. 4303-4313. [10.1364/OPEX.13.004303]
Bose-Einstein condensate in an optical lattice with tunable spacing: transport and static properties
FALLANI, LEONARDO;FORT, CHIARA;INGUSCIO, MASSIMO
2005
Abstract
In this Letter we report the investigation of transport and static properties of a Bose-Einstein condensate in a large-spaced optical lattice. The lattice spacing can be easily tuned starting from few micrometers by adjusting the relative angle of two partially reflective mirrors. We have performed in-situ imaging of the atoms trapped in the potential wells of a 20 um spaced lattice. For a lattice spacing of 10 um we have studied the transport properties of the system and the interference pattern after expansion, evidencing quite different results with respect to the physics of BECs in ordinary near-infrared standing wave lattices, owing to the different length and energy scales.File | Dimensione | Formato | |
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