W.F. Davidson
National Research Council
36 Papers
348 Citations
W.F. Davidson is an academic researcher from National Research Council. The author has contributed to research in topics: Neutrino oscillation & Neutron. The author has an hindex of 14, co-authored 36 publications.
Chat about Author
Papers
A heavy water detector to resolve the solar neutrino problem
G. Aardsma,R. C. Allen,J.D. Anglin,M. Bercovitch,A.L. Carter,Herbert H. Chen,W.F. Davidson,P. J. Doe,E. D. Earle,Hal Evans,G. T. Ewan,E. D. Hallman,C. K. Hargrove,P. Jagam,D. Kessler,H.W. Lee,J.R. Leslie,J. D. MacArthur,H. B. Mak,A. B. McDonald,W. McLatchie,B. C. Robertson,J. J. Simpson,D. Sinclair,P. Skensved,R. S. Storey +25 more
TL;DR: In this article, the authors measured the solar 8B ve flux, spectrum and direction, independent of neutrino flavor, in a heavy water Cerenkov detector, which is being designed to detect neutrinos.
119
The level structure of 196Pt
J. A. Cizewski,R. F. Casten,G.J. Smith,M. R. Macphail,M.L. Stelts,W. R. Kane,H.G. Börner,W.F. Davidson +7 more
TL;DR: In this paper, a level scheme for the 196 Pt(n, γ) reaction has been established consisting of 58 levels below 2.5 MeV and the location of the pairing energy gap at ≈ 1.8 MeV, most of which are assigned J π values of 0 +, 1 +, or 2 +.
56
Low-lying levels in 194Os and the prolate—oblate phase transition
TL;DR: In this paper, it was shown that rather different structural changes take place in the osmium and the platinum nuclei, and that the prolate-oblate transition occuring near 192 Os leads to a substantially developed oblate character in 194 Os.
49
Determination of the attenuation coefficients of visible and ultraviolet radiation in heavy water.
TL;DR: The results on light transmission in D2O indicate that a large 1000-Mg heavy water Cherenkov detector constructed for the purpose of neutrino detection is not limited by the attenuation length of radiation in the D1O.
47
The rotational structure of 227Ra
T. von Egidy,G. Barreau,H.G. Börner,W.F. Davidson,J. Larysz,D. D. Warner,P.H.M. Van Assche,K. Nybø,T.F. Thorsteinsen,G. Løvhøiden,E. R. Flynn,J. A. Cizewski,Raymond K. Sheline,D. Decman,D.G. Burke,G. Sletten,N. Kaffrell,W. Kurcewicz,T. Björnstad,Gunnar Nyman +19 more
TL;DR: The level structure of 227Ra has been studied using the (n, γ), (d, p) and ( t, d) reactions and the β− decay of 227Fr as discussed by the authors.
37