Sub-Doppler fluorescence on the atomic D2 line of a submicron rubidium-vapor layer

被引:0
作者
D. Sarkisyan
T. Becker
A. Papoyan
P. Thoumany
H. Walther
机构
[1] Institute for Physical Research,
[2] NAS of Armenia,undefined
[3] Ashtarak-2,undefined
[4] 378410 Armenia,undefined
[5] Sektion Physik der Ludwig-Maximilians Universität München,undefined
[6] 85748 Garching,undefined
[7] Germany,undefined
[8] Max-Planck-Institut für Quantenoptik,undefined
[9] 85748 Garching,undefined
[10] Germany,undefined
来源
Applied Physics B | 2003年 / 76卷
关键词
PACS: 42.62.Fi; 42.25.Bs; 39.30.+w;
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摘要
An extremely thin cell (ETC) with the thickness of a Rb atomic vapor layer in the range of 100–300 nm was fabricated. It is demonstrated that a simple laser-diode technique with a single resonant light beam is sufficient to observe separately all of the atomic hyperfine transitions of the D2 line of Rb (780 nm) and also allows us to measure the relative transition probabilities of the hyperfine transitions. The onset of collisional self-broadening of the hyperfine transitions as the number density of atoms increases was studied. The detrimental role of the atoms with slow longitudinal velocity in the sub-Doppler response of the Rb ETC is demonstrated by studies in which the cell is tilted from normal incidence of the laser beam. It is also shown that using an ETC allows us to resolve in a moderate external magnetic field the Zeeman splitting of the hyperfine transitions of the 87Rb D1 transition Fg=1Fe=1,2.
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页码:625 / 631
页数:6
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