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JOURNALS // Pis'ma v Zhurnal Èksperimental'noi i Teoreticheskoi Fiziki // Archive

Pis'ma v Zh. Èksper. Teoret. Fiz., 2010 Volume 91, Issue 1, Pages 8–11 (Mi jetpl618)

This article is cited in 44 papers

FIELDS, PARTICLES, AND NUCLEI

Search for macroscopic CP violating forces using a neutron EDM spectrometer

A. P. Serebrova, O. Zimmerb, P. Geltenbortb, A. K. Fomina, S. N. Ivanova, E. A. Kolomenskya, I. A. Krasnoshñhekovaa, M. S. Lasakova, V. M. Lobasheva, A. N. Pirozhkova, V. E. Varlamova, A. V. Vasilieva, O. M. Zherebtsova, E. B. Aleksandrovc, S. P. Dmitrievc, N. A. Dovatorc

a Petersburg Nuclear Physics Institute RAS
b Institut Laue-Langevin
c Ioffe Physico-Technical Institute RAS

Abstract: The search for CP violating forces between nucleons in the so-called axion window of force ranges $\lambda$ between $2\cdot10^{-5}\,{\rm m}$ and $0.02\,{\rm m}$ is interesting because only little experimental information is available there. Axion-like particles would induce a pseudo-magnetic field for neutrons close to bulk matter. A laboratory search investigates neutron spin precession close to a heavy mirror using ultracold neutrons in a magnetic resonance spectrometer. From the absence of a shift of the magnetic resonance we established new constraints on the coupling strength of axion-like particles in terms of the product $g_sg_p$ of scalar and pseudo-scalar dimensionless constants, as a function of the force range $\lambda$, $g_sg_p\lambda^2\leq2\cdot10^{-21}\,[{\rm cm}^2]$ (C.L.95%) for $10^{-4}\,{\rm cm}<\lambda<1\,{\rm cm}$. For $0.1\,{\rm cm}<\lambda<1\,{\rm cm}$ previous limits are improved by 4 to 5 orders of magnitude.

Received: 08.12.2009

Language: English


 English version:
Journal of Experimental and Theoretical Physics Letters, 2010, 91:1, 6–10

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