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Measurement of the parity-violating neutron spin rotation in He-4
Author(s) -
C.D. Bass,
J. M. Dawkins,
Da-Wei Luo,
A. Micherdzińska,
M. Sarsour,
W. M. Snow,
H. P. Mumm,
J. S. Nico,
P.R. Huffman,
D. M. Markoff,
B. R. Heckel,
H. E. Swanson
Publication year - 2005
Publication title -
journal of research of the national institute of standards and technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.202
H-Index - 59
eISSN - 2165-7254
pISSN - 1044-677X
DOI - 10.6028/jres.110.025
Subject(s) - physics , parity (physics) , meson , amplitude , weak interaction , nuclear physics , particle physics , nucleon , observable , neutron , isospin , spin (aerodynamics) , quantum mechanics , thermodynamics
In the meson exchange model of weak nucleon-nucleon (NN) interactions, the exchange of virtual mesons between the nucleons is parameterized by a set of weak meson exchange amplitudes. The strengths of these amplitudes from theoretical calculations are not well known, and experimental measurements of parity-violating (PV) observables in different nuclear systems have not constrained their values. Transversely polarized cold neutrons traveling through liquid helium experience a PV spin rotation due to the weak interaction with an angle proportional to a linear combination of these weak meson exchange amplitudes. A measurement of the PV neutron spin rotation in helium (φ PV ( n ,α)) would provide information about the relative strengths of the weak meson exchange amplitudes, and with the longitudinal analyzing power measurement in the p + α system, allow the first comparison between isospin mirror systems in weak NN interaction. An earlier experiment performed at NIST obtained a result consistent with zero: φ PV ( n ,α) = (8.0 ±14(stat) ±2.2(syst)) ×10(-7) rad / m[1]. We describe a modified apparatus using a superfluid helium target to increase statistics and reduce systematic effects in an effort to reach a sensitivity goal of 10(-7) rad/m.

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