• DocumentCode
    1552366
  • Title

    High-performance laser-pumped rubidium frequency standard for satellite navigation

  • Author

    Bandi, Thejesh ; Affolderbach, Christoph ; Calosso, Claudio E. ; Mileti, Gaetano

  • Author_Institution
    Lab. Temps-Frequence (LTF), Univ. of Neuchatel, Neuchâtel, Switzerland
  • Volume
    47
  • Issue
    12
  • fYear
    2011
  • Firstpage
    698
  • Lastpage
    699
  • Abstract
    Presented is a double-resonance continuous-wave laser-pumped rubidium (Rb) atomic clock with a short-term stability of 4 × 10-13 τ-1/2 for integration times 1 s ≤ τ ≤ 1000 s, and a medium- to long-term stability reaching the 1 × 10-14 level at 104 s. The clock uses an Rb vapour cell with increased diameter of 25 mm, accommodated inside a newly developed compact magnetron-type microwave cavity. This results in a bigger signal with reduced linewidth, and thus improved short-term stability from a clock with 1 dm3 physics package volume only. The medium- to long-term clock stability is achieved by minimising the effects of light-shift and temperature coefficient on the atoms. Potential applications of the clock are discussed.
  • Keywords
    atomic clocks; magnetrons; optical pumping; rubidium; satellite navigation; Rb; Rb vapour cell; atomic clock; compact magnetron-type microwave cavity; continuous-wave laser-pumped rubidium; double resonance; laser-pumped rubidium frequency standard; light-shift; long-term clock stability; long-term stability; medium-term clock stability; satellite navigation; short-term stability;
  • fLanguage
    English
  • Journal_Title
    Electronics Letters
  • Publisher
    iet
  • ISSN
    0013-5194
  • Type

    jour

  • DOI
    10.1049/el.2011.0389
  • Filename
    5873483