Exact(2)
Different materials and Beam Shaping Assemblies (BSA) are investigated and an optimized configuration is proposed.
In order to use 14.1 MeV neutrons produced by d-T neutron generators, two special and novel Beam Shaping Assemblies (BSA), including multi-layer and hexagonal lattice have been suggested and the effect of them has been investigated by MCNP4C Monte Carlo code.
Similar(58)
The neutron energy spectrum will be tailored using a beam shaping assembly.
Likewise, work related to neutron production targets, strippers, beam shaping assembly and patient treatment room is briefly described.
A feasibility study was conducted to design a beam shaping assembly for BNCT based on D T neutron generator.
We preliminarily develop and optimize a beam shaping assembly design for the 7Li p, n 7Be reaction with a 2.5 MeV proton beam.
A simple but effective beam shaping assembly (BSA) was calculated producing a high therapeutic gain compared to previously proposed facilities with the same nuclear reaction.
In addition, the possibility of using an optimized neutron beam in BNCT was investigated by proposing the optimized beam shaping assembly.
For this purpose, a special beam shaping assembly has been designed to provide an appropriate epithermal neutron beam suitable for BNCT.
Some general issues concerning the design of a proper irradiation beam shaping assembly, based on very hard energy neutron source spectrum, are reviewed.
The resulting neutron spectrum is slowed down using a beam shaping assembly (BSA), for which modeling is in an advanced neutronic design stage.
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