DocumentCode :
609488
Title :
Characterization of the distributed cavity phase shift in FO2 for improving the accuracy of SYRTE fountain clocks
Author :
Guena, J. ; Rosenbusch, P. ; Laurent, Philippe ; Abgrall, M. ; Rovera, Daniele ; Santarelli, Giorgio ; Tobar, M.E. ; Li, Ruodai ; Gibble, Kurt ; Bize, S. ; Clairon, A.
Author_Institution :
LNE-SYRTE, Obs. de Paris, UPMC, Paris, France
fYear :
2010
fDate :
13-16 April 2010
Firstpage :
1
Lastpage :
7
Abstract :
The distributed cavity phase (DCP) shift is a significant source of uncertainty in the accuracy budget of several atomic fountains (see for instance [1 2]). This effect arises when the moving cold atom cloud interacts with the imperfectly stationary microwave field inside the Ramsey cavity. The effect depends on several parameters: The cavity geometry which determines the phase distribution in the cavity, the atomic cloud position and velocity distributions, the microwave power, the overall fountain geometry and the detection parameters which modify the effective velocity distribution of detected atoms. Due to this large number of parameters, there is no straightforward method to measure the distributed cavity phase shift in atomic fountains. So far, the related uncertainty has typically been estimated based on one of several available models for the phase distribution [3 6], on measurements of the atomic cloud parameters and their stability in time and on worst case calculations of the clock shift.
Keywords :
atomic clocks; cavity resonators; measurement uncertainty; microwave measurement; microwave phase shifters; DCP measurement; FO2; Ramsey cavity; SYRTE fountain clock; atom cloud interaction; atomic cloud parameter measurement; atomic cloud position; atomic fountain; cavity geometry; clock shift; distributed cavity phase shift; fountain geometry; measurement uncertainty; microwave power; phase distribution; stability; stationary microwave field; velocity distribution;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
EFTF-2010 24th European Frequency and Time Forum
Conference_Location :
Noordwijk
Print_ISBN :
978-1-4673-5970-2
Type :
conf
DOI :
10.1109/EFTF.2010.6533640
Filename :
6533640
Link To Document :
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