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Opat, G.I.; Cimmino, A.; Klein, A.G.; Kaiser, H.; Arif, M.; Clothier, R.; Werner, S.A.; Missouri Univ., Columbia, MO
Melbourne Univ., Parkville (Australia). School of Physics1990
Melbourne Univ., Parkville (Australia). School of Physics1990
AbstractAbstract
[en] The phase shift predicted by Aharonov and Casher for a magnetic dipole diffracting around a charged electrode, has been verified for the case of thermal neutrons, using a perfect crystal neutron interferometer. The judicious use of the earth's gravitational field introduces a spin independent phase shift which enables unpolarized neutrons to be used. A supplementary magnetic field of the correct magnitude enables first order sensitivity to be achieved. The ratio of the experimental phase shift to that predicted theoretically is: 1.4 ± 0.4. 11 refs., 1 tab., 4 figs
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1990; 14 p
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