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An evaluation on the design of beam shaping assembly based on the D-T reaction for BNCT

机译:基于BNCT的D-T反应的光束整形组装设计评价

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Boron Neutron Capture Therapy (BNCT) can be achieved by using a compact neutron generator such as a compact D-T neutron source, in which neutron energy must be in the epithermal energy range with sufficient flux. For these requirements, a Beam Shaping Assembly (BSA) is needed. In this paper, three BSA designs based on the D-T reaction for BNCT are discussed. It is found that the BSA configuration designed by Rasouli et al. satisfies all of the International Atomic Energy Agency (IAEA) criteria. It consists of 14 cm uranium as multiplier, 23 cm TiF_3 and 36 cm Fluental as moderator, 4 cm Fe as fast neutron filter, 1 mm Li as thermal neutron filter, 2.6 cm Bi as gamma ray filter, and Pb as collimator and reflector. It is also found that use of specific filters is important for removing the fast and thermal neutrons and gamma contamination. Moreover, an appropriate neutron source plays a key role in providing a proper epithermal flux.
机译:硼中子捕获治疗(BNCT)可以通过使用紧凑的D-T中子源,其中中子能量必须在具有足够的通量的爬骨能量范围内实现。对于这些要求,需要一个光束整形组件(BSA)。本文讨论了基于BNCT的D-T反应的三种BSA设计。发现由Rasouli等人设计的BSA配置。满足所有国际原子能机构(原子能机构)标准。它由14厘米的铀作为乘法器,23cm tif_3和36厘米作为主持人,4厘米FE作为快节中子滤波器,1mm Li作为热中子滤波器,2.6cm为伽马射线滤光片,以及Pb作为准直器和反射器。还发现,特定过滤器的使用对于去除快速和热中子和γ污染是重要的。此外,适当的中子源在提供适当的曲线通量方面发挥着关键作用。

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