Published June 2021 | Version v1
Journal article

Optimization of target, moderator, and collimator in the accelerator-based boron neutron capture therapy system: A Monte Carlo study

  • 1. Yonsei University, Wonju (Korea, Republic of)
  • 2. Massachusetts General Hospital, Boston (United States)
  • 3. Wonju Severance Christian Hospital, Wonju (Korea, Republic of)
  • 4. Korea Institute of Radiological and Medical Science, Seoul (Korea, Republic of)
  • 5. The Korea Institute of Nuclear Nonproliferation and Control, Daejeon (Korea, Republic of)

Description

The aim of this study was to optimize the target, moderator, and collimator (TMC) in a neutron beam generator for the accelerator-based BNCT (A-BNCT) system. The optimization employed the Monte Carlo Neutron and Photon (MCNP) simulation. The optimal geometry for the target was decided as the one with the highest neutron flux among nominates, which were called as angled, rib, and tube in this study. The moderator was optimized in terms of consisting material to produce appropriate neutron energy distribution for the treatment. The optimization of the collimator, which wrapped around the target, was carried out by deciding the material to effectively prevent the leakage radiations. As results, characteristic of the neutron beam from the optimized TMC was compared to the recommendation by the International Atomic Energy Agent (IAEA). The tube type target showed the highest neutron flux among nominates. The optimal material for the moderator and collimator were combination of Fluental (Al203þAlF3) with 60Ni filter and lead, respectively. The optimized TMC satisfied the IAEA recommendations such as the minimum production rate of epithermal neutrons from thermal neutrons: that was 2.5 times higher. The results can be used as source terms for shielding designs of treatment rooms

Additional details

Publishing Information

Journal Title
Nuclear Engineering and Technology
Journal Volume
53
Journal Issue
6
Series
19 refs, 13 figs, 2 tabs
Journal Page Range
p. 1970-1978
ISSN
1738-5733