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  4. Impact of microwave-field inhomogeneity in an alkali vapour cell using Ramsey double-resonance spectroscopy
 
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Impact of microwave-field inhomogeneity in an alkali vapour cell using Ramsey double-resonance spectroscopy

Auteur(s)
Moreno, William 
Institut de physique 
Editeur(s)
Pellaton, Matthieu 
Institut de physique 
Affolderbach, Christoph 
Institut de physique 
Almat, Nil 
Institut de physique 
Gruet, Florian 
Institut de physique 
Mileti, Gaetano 
Institut de physique 
In
Quantum Electronics, Turpion, 2019/49/3/293-297
Mots-clés
  • microwave-power frequ...

  • microwave field ampli...

  • double-resonance cloc...

  • POP clock

  • rubidium

  • magnetron-type cavity...

  • vapour cell

Résumé
We numerically and experimentally evaluate the impact of the inhomogeneity of the microwave field in the cavity used to perform double-resonance (DR) Ramsey spectroscopy in a buffer gas alkali vapour cell. The Ramsey spectrum is numerically simulated using a simple theoretical model and taking into account the field distribution in a magnetron-type microwave resonator. An experimental evaluation is performed using a DR pulsed optically pumped (POP) atomic clock. It is shown that the sensitivity to the micro-wave power of the DR POP clock can be reproduced from the combination of two inhomogeneities across the vapour cell: microwave field inhomogeneity and atomic ground-state resonance frequency inhomogeneity. Finally, we present the existence of an optimum operation point for which the microwave power sensitivity of our DR POP clock is reduced by two orders of magnitude. It leads into a long-term frequency stability of 1 × 10<sup>-14</sup>.
URI
https://libra.unine.ch/handle/123456789/3077
DOI
10.1070/QEL16883
Autre version
https://doi.org/10.1070/QEL16883
Type de publication
Resource Types::text::journal::journal article
Dossier(s) à télécharger
 main article: Moreno_W._Impact_of_microwave-field_20190329.pdf (1.21 MB)
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