Scaling laws in velocity-selective coherent population trapping in the presence of polarization-gradient cooling

dc.contributor.author
Menotti, C.
dc.contributor.author
Morigi, Giovanna
dc.contributor.author
Müller, J. H.
dc.contributor.author
Arimondo, Ennio
dc.contributor.author
American Physical Society
dc.date.issued
1997
dc.identifier
https://ddd.uab.cat/record/115787
dc.identifier
urn:10.1103/PhysRevA.56.4327
dc.identifier
urn:oai:ddd.uab.cat:115787
dc.identifier
urn:recercauab:ARE-44319
dc.identifier
urn:articleid:10502947v56n5p4327
dc.identifier
urn:scopus_id:0005130986
dc.identifier
urn:wos_id:A1997YF52900121
dc.description.abstract
One-dimensional laser cooling based on velocity-selective coherent population trapping (VSCPT) on a 2g→1e transition has been investigated numerically through the solution of the optical Bloch equations. As in the work of G. Morigi et al. [Phys. Rev. A 53, 2616 (1996)], it has been found that for a large set of atomic and laser parameters, the VSCPT cooling process may be described through scaling-law relations. The scaling laws are based on the relations between the loss rates at large atomic momentum and their dependence on the momentum around zero value. The role of the laser detuning on the VSCPT trapping efficiency has been examined and scaling laws including the detuning have been derived.
dc.format
application/pdf
dc.language
eng
dc.publisher
dc.relation
Physical review. A ; Vol. 56, Issue 5 (November 1997), p. 4327-4330
dc.rights
open access
dc.rights
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dc.rights
https://rightsstatements.org/vocab/InC/1.0/
dc.title
Scaling laws in velocity-selective coherent population trapping in the presence of polarization-gradient cooling
dc.type
Article


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