Published December 1998 | Version v1
Journal article

Evaluation of useful neutron flux for accelerator boron neutron capture therapy using the 7Li(p,n) reaction

  • 1. The University of Sydney, NSW (Australia). High Energy Physics Department, School of Physics
  • 2. St George Cancer Centre, Kogarah, NSW (Australia)
  • 3. St, George Cancer Centre, Kogarah, NSW (Australia)

Description

Accelerator neutron sources for epithermal neutron capture therapy utilising the Li(p,n) nuclear reaction are proposed to operate in the range of 1.88 to 2.5 MeV proton energy. Operation with proton energies closer to the reaction threshold decreases neutron yield but allows for smaller reflector and moderator, with less reduction of the epithermal flux, whereas high energies allow thicker targets to be used. The neutron yields for thick lithium targets are estimated in the energy range of 1.881 MeV to 2.5 MeV and useful neutron flux determined. The optimal range of proton energy is found to be 1.89 - 1.95 MeV, and this is recommended for more detailed studies of neutron transport properties for accelerator BNCT. Copyright (1998) Australasian Physical and Engineering Sciences in Medicine

Additional details

Publishing Information

Journal Title
Australasian Physical and Engineering Sciences in Medicine
Journal Volume
21
Journal Issue
4
Journal Page Range
p. 193-199
ISSN
0158-9938
CODEN
AUPMDI

Optional Information

Notes
25 refs., 4 tabs., 5 figs.