Published July 2006 | Version v1
Report

Determination of differential elastic and double-differential neutron scattering cross sections of elemental tungsten at energies between 7.19 MeV and 14.10 MeV

Description

Differential cross sections of elastic and inelastic neutron scattering on elemental tungsten were determined in the energy range from 7.19 MeV to 14.10 MeV at eight incident energies. The data were derived by comparing the net time-of-flight spectra with calculated spectra using a realistic Monte Carlo simulation. The time-of-flight measurement was accompanied by extensive and careful calibrations. The tungsten cross sections were normalized to hydrogen scattering. The disturbing breakup scattering fraction of the non-momoenergetic DD neutron source can be subtracted after having also been calculated by a Monte Carlo simulation. The data for such a calculation are checked and adjusted using an additional pure breakup neutron source based on the 4He(d,np)4He reaction. By proper subtraction of the breakup fractions, double-differential cross sections can be obtained for neutron emission energies down to 1.5 MeV. Differential elastic cross sections could be determined only in combination with a certain inelastic component. Angle-integrated cross sections were dervied by fitting Legendre polynomial expansions to the measured angular distributions using least-squares methods. The results of this work have been compared with those of other authors and with the ENDF/B-VI evaluation

Availability note (English)

Also available from: Wirtschaftsverlag NW, Verlag fuer neue Wissenschaft GmbH, Buergermeister-Schmidt-Str. 74-76, 27568 Bremerhaven

Additional details

Publishing Information

ISBN
3-86509-549-X
Imprint Pagination
101 p.
ISSN
0936-0492
Report number
PTB-N--51