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Velocity-selective coherent population trapping

A. Aspect, E. Arimondo, R. Kaiser, N. Vansteenkiste, C. Cohen-Tannoudji, Laser cooling below the one-photon recoil energy by velocity-selective coherent population trapping. J. Opt. Soc. Am. B 6, 2112 (1989)... [Pg.730]

To date, two specific phase-space optical-pumping schemes have been demonstrated. One uses a two-photon Raman transition and the other is based on the velocity-selective coherent population-trapping (VSCPT) effect. [Pg.87]

Velocity-selective coherent population trapping of ultracold atoms... [Pg.89]

Fig. 5. 15 (a) Three-level yl-scheme describing the interaction of and a circularly polarized laser waves with an atomic transition J = l —J = l. The dashed and wavy lines show the ways by which the atoms are pumped into the yl-system after a few cycles of absorption and spontaneous emission, (b) Atomic momentum distribution following a velocity-selective coherent population-trapping process. (Reprinted from Aspect et al. 1988 with courtesy and permission of the American Physical Society.)... [Pg.90]

Laser cooling below the one-photon recoil energy by velocity-selective coherent population trapping. Physical Review Letters, 61, 826 829. [Pg.276]

The coherent population-trapping effect occurs only in atoms that have a zero projection of their velocity onto the propagation direction, that is, under exact resonance conditions. Therefore, the atomic velocity selectivity of this effect can be used to select atoms with ultralow velocities (Aspect et al. 1988) for use with counterpropagating laser waves. [Pg.64]


See other pages where Velocity-selective coherent population trapping is mentioned: [Pg.383]    [Pg.89]    [Pg.383]    [Pg.89]    [Pg.89]   
See also in sourсe #XX -- [ Pg.87 , Pg.89 ]




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