首页> 外文期刊>Journal of Applied Crystallography >A simulational study of the indirect-geometry neutron spectrometer BIFROST at the European Spallation Source, from neutron source position to detector position
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A simulational study of the indirect-geometry neutron spectrometer BIFROST at the European Spallation Source, from neutron source position to detector position

机译:从中子源位置到探测器位置的间接几何中子谱仪Bifrost的模拟研究

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摘要

The European Spallation Source (ESS) is intended to become the most powerful spallation neutron source in the world and the flagship of neutron science in upcoming decades. The exceptionally high neutron flux will provide unique opportunities for scientific experiments but also set high requirements for the detectors. One of the most challenging aspects is the rate capability and in particular the peak instantaneous rate capability, i.e. the number of neutrons hitting the detector per channel or cm(2) at the peak of the neutron pulse. The primary purpose of this paper is to estimate the incident rates that are anticipated for the BIFROST instrument planned for ESS, and also to demonstrate the use of powerful simulation tools for the correct interpretation of neutron transport in crystalline materials. A full simulation model of the instrument from source to detector position, implemented with the use of multiple simulation software packages, is presented. For a single detector tube, instantaneous incident rates with a maximum of 1.7 GHz for a Bragg peak from a single crystal and 0.3 MHz for a vanadium sample are found. This paper also includes the first application of a new pyrolytic graphite model and a comparison of different simulation tools to highlight their strengths and weaknesses.
机译:欧洲散裂源(ESS)计划在未来几十年内成为世界上最强大的散裂中子源和中子科学的旗舰。极高的中子通量将为科学实验提供独特的机会,但也对探测器提出了很高的要求。最具挑战性的方面之一是速率能力,尤其是峰值瞬时速率能力,即每个通道或中子脉冲峰值处撞击探测器的中子数。本文的主要目的是估算计划用于ESS的BIFROST仪器的预期入射率,并演示如何使用强大的模拟工具来正确解释晶体材料中的中子输运。提出了一个从源位置到探测器位置的完整仿真模型,该模型使用多个仿真软件包实现。对于单探测管,发现单晶布拉格峰的瞬时入射率最大为1.7GHz,钒样品的瞬时入射率最大为0.3MHz。本文还首次应用了一种新的热解石墨模型,并对不同的模拟工具进行了比较,以突出它们的优缺点。

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