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  4. Optical pumping in a microfabricated Rb vapor cell using a microfabricated Rb discharge light source
 
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Optical pumping in a microfabricated Rb vapor cell using a microfabricated Rb discharge light source

Auteur(s)
Venkatraman, V
Kang, Songbai 
Institut de physique 
Affolderbach, Christoph 
Institut de physique 
Shea, H
Mileti, Gaetano 
Institut de physique 
Date de parution
2014
In
Applied Physics Letters, American Institute of Physics
Vol.
104
No
5
De la page
5410
Résumé
Miniature(<few cm<sup>3</sup>) vapor-cell based devices using optical pumping of alkali atoms, such as atomic clocks and magnetometers, today mostly employ vertical-cavity surface-emitting lasers as pump light sources. Here, we report on the demonstration of optical pumping in a microfabricated alkali vapor resonance cell using (1) a microfabricated Rb discharge lamp light source, as well as (2) a conventional glass-blown Rb discharge lamp. The microfabricated Rb lamp cell is a dielectric barrier discharge (DBD) light source, having the same inner cell volume of around 40 mm<sup>3</sup> as that of the resonance cell, both filled with suitable buffer gases. A miniature (∼2 cm<sup>3</sup> volume) test setup based on the M<sub>z</sub> magnetometer interrogation technique was used for observation of optical-radiofrequency double-resonance signals, proving the suitability of the microfabricated discharge lamp to introduce efficient optical pumping. The pumping ability of this light source was found to be comparable to or even better than that of a conventional glass-blown lamp. The reported results indicate that the micro-fabricated DBD discharge lamp has a high potential for the development of a new class of miniature atomic clocks, magnetometers, and quantum sensors.
Identifiants
https://libra.unine.ch/handle/123456789/8621
_
10.1063/1.4864080
Type de publication
journal article
Dossier(s) à télécharger
 main article: Venkatraman_V.-Optical_pumping_in_a_microfabricated_Rb-20140205.pdf (2.09 MB)
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