Published June 1993 | Version v1
Report

Monte Carlo simulation of fast neutron scattering experiments including DD-breakup neutrons

Description

The computational simulation of the deuteron breakup in a scattering experiment has been investigated. Experimental breakup spectra measured at 16 deuteron energies and at 7 angles for each energy served as the data base. Analysis of these input data and of the conditions of the scattering experiment made it possible to reduce the input data. The use of one weighted breakup spectrum is sufficient to simulate the scattering spectra at one incident neutron energy. A number of tests were carried out to prove the validity of this result. The simulation of neutron scattering on carbon, including the breakup, was compared with measured spectra. Differences between calculated and measured spectra were for the most part within the experimental uncertainties. Certain significant deviations can be attributed to erroneous scattering cross sections taken from an evaluation and used in the simulation. Scattering on higher-lying states in 12C can be analyzed by subtracting the simulated breakup-scattering from the experimental spectra. (orig.)

Availability note (English)

Available from FIZ Karlsruhe.

Additional details

Publishing Information

ISBN
3-89429-332-2
Imprint Pagination
49 p.
ISSN
0936-0492
Report number
PTB-N--14