The light-induced-drift (LID) effect has been experimentally studied in specially coated capillary cells which manifest a negligible atom-wall interaction. This property permits a rapid evolution of LID and makes possible an experimental study of the stationary states as a function of different laser tunings and laser power densities. The light-induced density profile along the major axis of the cell has been analyzed. The experimental features are qualitatively reproduced by a two-level theory. © 1988 The American Physical Society.

Mariotti, E., Xu, J.H., Allegrini, M., Alzetta, G., Gozzini, S., Moi, L. (1988). Light induced drift stationary states. PHYSICAL REVIEW A, GENERAL PHYSICS, 38(3), 1327-1334 [10.1103/PhysRevA.38.1327].

Light induced drift stationary states

MARIOTTI, E.;Moi, L.
1988-01-01

Abstract

The light-induced-drift (LID) effect has been experimentally studied in specially coated capillary cells which manifest a negligible atom-wall interaction. This property permits a rapid evolution of LID and makes possible an experimental study of the stationary states as a function of different laser tunings and laser power densities. The light-induced density profile along the major axis of the cell has been analyzed. The experimental features are qualitatively reproduced by a two-level theory. © 1988 The American Physical Society.
1988
Mariotti, E., Xu, J.H., Allegrini, M., Alzetta, G., Gozzini, S., Moi, L. (1988). Light induced drift stationary states. PHYSICAL REVIEW A, GENERAL PHYSICS, 38(3), 1327-1334 [10.1103/PhysRevA.38.1327].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/20207
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