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Test of Lorentz invariance with spin precession of ultracold neutrons

I. Altarev, C. A. Baker, G. Ban, G. Bison, K. Bodek, M. Daum, P. Fierlinger, P. Geltenbort, K. Green, M. G. D. van der Grinten, E. Gutsmiedl, P. G. Ha

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Abstract

A clock comparison experiment, analyzing the ratio of spin precession frequencies of stored ultracold neutrons and $^{199}$Hg atoms is reported. %57 No daily variation of this ratio could be found, from which is set an upper limit on the Lorentz invariance violating cosmic anisotropy field $b_{bot} < 2 imes 10^{-20} { m eV}$ (95% C.L.). This is the first limit for the free neutron. This result is also interpreted as a direct limit on the gravitational dipole moment of the neutron $|g_n| < 0.3 $eV/$c^2$ m from a spin-dependent interaction with the Sun. Analyzing the gravitational interaction with the Earth, based on previous data, yields a more stringent limit $|g_n| < 3 imes 10^{-4} $eV/$c^2 $m.

Information

Published
2009 as article
Phys. Rev. Lett. , 103 - page(s): 081602
Contact
Prof. Dr. Peter Fierlinger
Type
experimental work
Links
pdf
arXiv:0905.3221
Related to the research area(s):
C

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