Jäger Tim T, Losko Adrian S, Wolfertz Alexander, Schmidt Søren, Bertelsen Mads, Khaplanov Anton, Agnew Sean R, Funama Fumiaki, Morgano Manuel, Roth Markus, Gochanour Jason R, Long Alexander M, Lutterotti Luca, Vogel Sven C
Material Science and Technology Division, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
Institut für Kernphysik TU Darmstadt Schlossgartenstrasse 9 64289Darmstadt Germany.
J Appl Crystallogr. 2024 Jul 11;57(Pt 4):1107-1114. doi: 10.1107/S1600576724004448. eCollection 2024 Aug 1.
Neutron diffraction beamlines have traditionally relied on deploying large detector arrays of He tubes or neutron-sensitive scintillators coupled with photomultipliers to efficiently probe crystallographic and microstructure information of a given material. Given the large upfront cost of custom-made data acquisition systems and the recent scarcity of He, new diffraction beamlines or upgrades to existing ones demand innovative approaches. This paper introduces a novel Timepix3-based event-mode imaging neutron diffraction detector system as well as first results of a silicon powder diffraction measurement made at the HIPPO neutron powder diffractometer at the Los Alamos Neutron Science Center. Notably, these initial measurements were conducted simultaneously with the He array on HIPPO, enabling direct comparison. Data reduction for this type of data was implemented in the code, enabling Rietveld analysis. Results from the Timepix3-based setup and HIPPO were benchmarked against simulations, showing good agreement for peak resolution. With further development, systems such as the one presented here may substantially reduce the cost of detector systems for new neutron instrumentation as well as for upgrades of existing beamlines.
传统上,中子衍射束线依靠部署由氦管组成的大型探测器阵列或与光电倍增管耦合的中子敏感闪烁体,来有效地探测给定材料的晶体学和微观结构信息。鉴于定制数据采集系统的前期成本高昂,以及近期氦气的短缺,新建衍射束线或对现有束线进行升级都需要创新方法。本文介绍了一种基于Timepix3的新型事件模式成像中子衍射探测器系统,以及在洛斯阿拉莫斯中子科学中心的HIPPO中子粉末衍射仪上进行的硅粉衍射测量的初步结果。值得注意的是,这些初始测量是与HIPPO上的氦阵列同时进行的,从而能够进行直接比较。这类数据的归约在代码中实现,从而能够进行Rietveld分析。基于Timepix3的装置和HIPPO的结果与模拟结果进行了对比,在峰分辨率方面显示出良好的一致性。随着进一步发展,本文介绍的这类系统可能会大幅降低新中子仪器以及现有束线升级的探测器系统成本。