DocumentCode
1477320
Title
Progress in atomic fountains at LNE-SYRTE
Author
Guéna, Jocelyne ; Abgrall, Michel ; Rovera, Daniele ; Laurent, Philippe ; Chupin, Baptiste ; Lours, Michel ; Santarelli, Giorgio ; Rosenbusch, Peter ; Tobar, Michael E. ; Li, Ruoxin ; Gibble, Kurt ; Clairon, Andre ; Bize, Sebastien
Author_Institution
Obs. de Paris, UPMC, Paris, France
Volume
59
Issue
3
fYear
2012
fDate
3/1/2012 12:00:00 AM
Firstpage
391
Lastpage
409
Abstract
We give an overview of the work done with the Laboratoire National de Metrologie et d´Essais-Systemes de Reference Temps-Espace (LNE-SYRTE) fountain ensemble during the last five years. After a description of the clock ensemble, comprising three fountains, FO1, FO2, and FOM, and the newest developments, we review recent studies of several systematic frequency shifts. This includes the distributed cavity phase shift, which we evaluate for the FO1 and FOM fountains, applying the techniques of our recent work on FO2. We also report calculations of the microwave lensing frequency shift for the three fountains, review the status of the blackbody radiation shift, and summarize recent experimental work to control microwave leakage and spurious phase perturbations. We give current accuracy budgets. We also describe several applications in time and frequency metrology: fountain comparisons, calibrations of the international atomic time, secondary representation of the SI second based on the 87Rb hyperfine frequency, absolute measurements of optical frequencies, tests of the T2L2 satellite laser link, and review fundamental physics applications of the LNE-SYRTE fountain ensemble. Finally, we give a summary of the tests of the PHARAO cold atom space clock performed using the FOM transportable fountain.
Keywords
atomic clocks; blackbody radiation; frequency measurement; time measurement; FO1 fountains; FO2 fountains; FOM; LNE-SYRTE; Laboratoire National de Metrologie et d´Essais-Systemes de Reference Temps-Espace; PHARAO cold atom space clock; T2L2 satellite laser link; atomic fountains; blackbody radiation shift; frequency metrology; microwave leakage control; microwave lensing frequency shift; spurious phase perturbations; systematic frequency shifts; time metrology; Atomic beams; Atomic clocks; Cavity resonators; Laser beams; Laser stability; Masers; Microwave oscillators;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2012.2208
Filename
6174184
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