Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8209811 | Applied Radiation and Isotopes | 2015 | 18 Pages |
Abstract
The experimental characterization of a pulsed D-D fast neutron generator designed for fan-beam tomography applications is presented. Using Monte Carlo simulations the response of an LB6411 neutron probe was related to the neutron generator output. The yield was measured to be up to â¼107neutrons/s. An aluminum block was moved stepwise between the source and a BC400 plastic scintillator detector in order to measure an edge response. This edge response was related to the neutron emitting spot size using Monte Carlo simulations and a simplified geometry-based model. The experimentally determined spot size of 2.2Â mm agreed well with the simulated value of 1.5Â mm. The time-dependence of pulsed output for various operating conditions was also measured. The neutron generator was found to satisfy design requirements for a planned fast neutron tomography arrangement based on a plastic scintillator detector array which is expected to be capable of producing 2D tomograms with a resolution of â¼1.5Â mm.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Radiation
Authors
Robert Adams, Lorenz Bort, Robert Zboray, Horst-Michael Prasser,