欧洲散裂源的核数据发展

IF 1 Q3 NUCLEAR SCIENCE & TECHNOLOGY
J. Damián, D. Dijulio, G. Muhrer
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引用次数: 1

摘要

中子设计的输运计算需要精确的核数据和经过验证的计算工具。在欧洲散裂源的散裂物理组,我们执行屏蔽和中子束计算,以帮助部署当前高亮度(顶部)慢化剂的仪器套件,以及高强度底部慢化剂的设计,目前正在为该设施进行研究。这项工作包括提供现有的最佳核数据,并在必要时改进模型和工具。在本文中,我们介绍了这些活动的现状,包括一套用于慢化剂,反射器和结构材料的热散射核,考虑晶体尺寸效应的铍核,基于路径积分分子动力学的纳米金刚石,液态氢和氘核的新核的开发,以及使用软件包NCrystal来协助新殿下项目框架内核数据的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nuclear data development at the European Spallation Source
Transport calculations for neutronic design require accurate nuclear data and validated computational tools. In the Spallation Physics Group, at the European Spallation Source, we perform shielding and neutron beam calculations to help the deployment of the instrument suite for the current high brilliance (top) moderator, as well for the design of the high intensity bottom moderator, currently under study for the facility. This work includes providing the best available nuclear data in addition to improving models and tools when necessary. In this paper we present the status of these activities, which include a set of thermal scattering kernels for moderator, reflector, and structural materials, the development of new kernels for beryllium considering crystallite size effects, nanodiamonds, liquid hydrogen and deuterium based on path integral molecular dynamics, and the use of the software package NCrystal to assist the development of nuclear data in the framework of the new HighNESS project.
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来源期刊
Journal of Neutron Research
Journal of Neutron Research NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
2.30
自引率
9.10%
发文量
23
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