DocumentCode :
2657140
Title :
87Rb and 133Cs laser cooled clocks: testing the stability of fundamental constants
Author :
Santos, F. Pereira dos ; Marion, H. ; Abgrall, M. ; Zhang, S. ; Sortais, Y. ; Bize, S. ; Maksimovic, I. ; Calonico, D. ; Grünert, J. ; Mandache, C. ; Vian, C. ; Rosenbuch, P. ; Lemonde, P. ; Santarelli, G. ; Laurent, Ph ; Clairon, A. ; Salomon, C.
Author_Institution :
Obs. de Paris, France
fYear :
2003
fDate :
4-8 May 2003
Firstpage :
55
Lastpage :
67
Abstract :
Over five years we have compared the hyperfine frequencies of 133Cs and 87Rb atoms in their electronic ground state using several laser cooled 133Cs and 87Rb atomic fountains with an accuracy of ∼10-15. These measurements set a stringent upper bound to a possible fractional time variation of the ratio between the two frequencies: d/dt In (νRb/νCs)=(0.2±7.0)×10-16 yr-1 (1σ uncertainty). The same limit applies to a possible variation of the quantity (μRb/μCs)α-0.44, which involves the ratio of nuclear magnetic moments and the fine structure constant. To improve this test, one needs more accurate cesium fountain clocks, for which the major limiting factor is the cold collision frequency shift. This effect can now be evaluated with great accuracy using a new method which we also present here. It is based on a transfer of population by adiabatic passage that allows to prepare cold atomic samples with a well defined ratio of atomic density and atom number. This method is used to perform a measurement of the cold collision frequency shift in a laser cooled cesium clock at the percent level. With improvements, the adiabatic passage would allow measurements of density-dependent phase shifts at the 10-3 level in high precision experiments. With this precision, reaching an accuracy of 10-16 is possible.
Keywords :
atomic clocks; caesium; frequency measurement; ground states; hyperfine structure; laser cooling; nuclear magnetic moment; rubidium; 133Cs Rb atoms; 133Cs laser cooled clocks; 87Rb atoms; 87Rb laser cooled clocks; Cs; Rb; atom number; atomic density; cesium fountain clocks; cold atomic samples; cold collision frequency shift; density dependent phase shifts; electronic ground state; hyperfine frequency; limiting factor; nuclear magnetic moments; stringent upper bound; Atom lasers; Atomic beams; Atomic measurements; Clocks; Frequency measurement; Magnetic moments; Stationary state; Testing; Time measurement; Upper bound;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Frequency Control Symposium and PDA Exhibition Jointly with the 17th European Frequency and Time Forum, 2003. Proceedings of the 2003 IEEE International
ISSN :
1075-6787
Print_ISBN :
0-7803-7688-9
Type :
conf
DOI :
10.1109/FREQ.2003.1274986
Filename :
1274986
Link To Document :
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