论文标题

巴西多功能反应堆(RMB)项目的中子指南建筑工具

Neutron Guide Building Instruments of the Brazilian Multipurpose Reactor (RMB) Project

论文作者

Souza, Alexandre P. S., de Oliveira, Luiz P., Yokaichiya, Fabiano, Genezini, Frederico A., Franco, Margareth K. K. D.

论文摘要

越来越多的科学家社区一直在最多样化的科学领域中使用中子。为了满足研究人员在物理,化学,材料科学,工程,文化遗产,生物学和地球科学领域的需求,巴西多用途反应堆(RMB)将提供3个热指南和3个冷向导,并安装了几种材料表征的工具。在这项研究中,我们提出了两种原始仪器的标准设计要求,即Sabiá和Araponga。它们分别是冷和热中子仪器,对应于小角度的中子散射(SANS)和高分辨率粉末中子衍射仪(HRPND),该衍射仪(HRPND)安装在RMB的中子指南(N02)中。为了为两种乐器提供足够的通量,我们在这里提出了对使用简单和分裂指南将中子束传输到同一指南上两个不同仪器的初步研究。为此,我们使用Monte Carlo模拟使用MCSTAS软件来检查中性中子传输的效率,以了解不同的基本配置和来源。通过考虑这些结果,可以得出结论,在大多数情况下,分裂指南配置比使用独立于源的传输中子束的情况更有效。我们还验证,在弯曲指南上使用不同的涂料指数在弯曲指南上至少在模拟案例上是至关重要的,以优化中子通量(强度和差异),并减少设施安装成本。

A growing community of scientists has been using neutrons in the most diverse areas of science. In order to meet the researchers demand in the areas of physics, chemistry, materials sciences, engineering, cultural heritage, biology and earth sciences, the Brazilian Multipurpose Reactor (RMB) will provide 3 thermal guides and 3 cold guides, with the installation of several instruments for materials characterization. In this study, we present a standard design requirement of two primordial instruments, namely Sabiá and Araponga. They are, respectively, cold and thermal neutron instruments and correspond to a Small-Angle Neutron Scattering (SANS) and High-Resolution Powder Neutron Diffractometer (HRPND) to be installed in the Neutron Guide Building (N02) of RMB. To provide adequate flux for both instruments, we propose here an initial investigation of the use of simple and split guides to transport neutron beams to two different instruments on the same guide. For this purpose, we use Monte Carlo simulations utilizing McStas software to check the efficiency of thermal neutron transport for different basic configuration and sources. By considering these results, it is possible to conclude that the split guide configuration is, in most cases, more efficient than cases that use transmitted neutron beams independently of source. We also verify that the employment of different coating indexes for concave and convex surfaces on curved guides is crucial, at least on simulated cases, to optimise neutron flux (intensity and divergence) and diminish facility installation cost.

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