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Parity violation in232Thneutron resonances above 250 eV
Author(s) -
É. I. Sharapov,
J. D. Bowman,
B. E. Crawford,
P. P. J. Delheij,
C. M. Frankle,
M. Iinuma,
J. N. Knudson,
L. Y. Lowie,
J. Lynch,
A. Masaike,
Y. Matsuda,
G. E. Mitchell,
H. Penttilä,
H. Postma,
N. R. Roberson,
S. J. Seestrom,
S. L. Stephenson,
YiFen Yen,
V. W. Yuan
Publication year - 2000
Publication title -
physical review c
Language(s) - English
Resource type - Journals
eISSN - 1089-490X
pISSN - 0556-2813
DOI - 10.1103/physrevc.61.025501
Subject(s) - physics , neutron , parity (physics) , energy (signal processing) , thorium , atomic physics , nuclear physics , uranium , quantum mechanics
The analysis of parity nonconservation (PNC) measurements performed on {sup 232}Th by the TRIPLE Collaboration has been extended to include the neutron energy range of 250 to 1900 eV. Below 250 eV all ten statistically significant parity violations have the same sign. However, at higher energies PNC effects of both signs were observed in the transmission of longitudinally polarized neutrons through a thick thorium target. Although the limited experimental energy resolution precluded analysis in terms of the longitudinal asymmetry, parity violations were observed and the cross section differences for positive and negative neutron helicities were obtained. For comparison, a similar analysis was performed on the data below 250 eV, for which longitudinal asymmetries were obtained previously. For energies below 250 eV, the p-wave neutron strength functions for the J=1/2 and J=3/2 states were extracted: S{sub 1/2}{sup 1}=(1.68{+-}0.61)x10{sup -4} and S{sub 3/2}{sup 1}=(0.75{+-}0.18)x10{sup -4}. The data provide constraints on the properties of local doorway states proposed to explain the PNC sign effect in thorium. (c) 2000 The American Physical Society.

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