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AbstractAbstract
[en] Because of their importance as neutron standards, we present comparisons of measured and calculated prompt fission neutron spectra N(E) and average prompt neutron multiplicities anti nu/sub p/ for the spontaneous fission of 252Cf. In particular, we test three representations of N(E) against recent experimental measurements of the differential spectrum and threshold integral cross sections. These representations are the Maxwellian spectrum, the NBS spectrum, and the Los Alamos spectrum of Madland and Nix. For the Maxwellian spectrum, we obtain the value of the Maxwellian temperature T/sub M/ by a least-squares adjustment to the experimental differential spectrum of Poenitz and Tamura. For the Los Alamos spectrum, a similar least-squares adjustment determines the nuclear level-density parameter a, which is the single unknown parameter that appears. The NBS spectrum has been previously constructed by adjustments to eight differential spectra measured during the period 1965 to 1974. Among these three representations, we find that the Los Alamos spectrum best reproduces both the differential and integral measurements, assuming ENDF/B-V cross sections in the calculation of the latter. Although the NBS spectrum reproduces the integral measurements fairly well, it fails to satisfactorily reproduce the new differential measurement, and the Maxwellian spectrum fails to satisfactorily reproduce the integral measurements. Additionally, we calculate a value of anti nu/sub p/ from the Los Alamos theory that is within approximately 1% of experiment. 25 references
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Secondary Subject
Source
1 Nov 1984; 28 p; Meeting on nuclear standard reference data; Geel (Belgium); 12-16 Nov 1984; CONF-8411118--1; Available from NTIS, PC A03/MF A01 as DE85003728
Record Type
Report
Literature Type
Conference; Numerical Data
Report Number
Country of publication
ACTINIDE NUCLEI, ALPHA DECAY RADIOISOTOPES, BARYONS, CALIFORNIUM ISOTOPES, DATA, DECAY, ELEMENTARY PARTICLES, EVEN-EVEN NUCLEI, FERMIONS, FISSION, FISSION NEUTRONS, HADRONS, HEAVY NUCLEI, INFORMATION, ISOTOPES, MAXIMUM-LIKELIHOOD FIT, NEUTRONS, NUCLEAR DECAY, NUCLEAR REACTIONS, NUCLEI, NUCLEONS, NUMERICAL DATA, NUMERICAL SOLUTION, RADIOISOTOPES, SPECTRA, YEARS LIVING RADIOISOTOPES
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