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Improved Limits on Variation of the Fine Structure Constant and Violation of Local Position Invariance

Authors :
Neil Ashby
Steven R. Jefferts
M. J. Delaney
Windell H. Oskay
Scott A. Diddams
Luca Lorini
Jason Stalnaker
T.M. Fortier
J. C. Bergquist
Leo W. Hollberg
Jon H. Shirley
Kyoungsik Kim
Wayne M. Itano
Thomas E. Parker
Thomas P. Heavner
Filippo Levi
Source :
2007 IEEE International Frequency Control Symposium Joint with the 21st European Frequency and Time Forum.
Publication Year :
2007
Publisher :
IEEE, 2007.

Abstract

We report tests of local position invariance (LPI) and constancy of fundamental constants from measurements of the frequency ratio of the 282-nm 199Hg+ optical clock transition to the ground-state hyperfine splitting in 133Cs. Analysis of the frequency ratio, extending over six years at NIST, is used to place a limit on the fractional variation of the two clocks of less than 5.8times10-6 per change in normalized solar gravitational potential, and a limit on fractional variation of the fine structure constant at alpha dot/alpha < 1.3x10-16 yr-1, assuming invariance of other fundamental constants. Comparison of our results with those previously reported for the absolute optical frequency measurements of coupled 171Yb+ versus other constraint 133Cs standard yields a coupled constraint of -0.04times10-15 < alpha dot/alpha < 0.46times10-15 yr-1 and -2.39times10-15 < d/dt In muCs/muB < 0.47times10-15 yr-1.

Details

ISSN :
10756787
Database :
OpenAIRE
Journal :
2007 IEEE International Frequency Control Symposium Joint with the 21st European Frequency and Time Forum
Accession number :
edsair.doi...........ee43b0b683d982b9a0f17ef48ffe496e
Full Text :
https://doi.org/10.1109/freq.2007.4319157