论文标题
基于硼-10的多晶状体和氦3的热中子检测器中的时间和能量分辨效应
Time- and energy-resolved effects in the boron-10 based Multi-Grid and helium-3 based thermal neutron detectors
论文作者
论文摘要
基于Boron-10的多网格检测器正在开发为基于氦3的中子检测器的替代方案。在欧洲散布来源,检测器将用于冷到热中子能量的飞行时间中子光谱。这项工作的目的是研究多网格检测器的精细时间和能量分辨的效果,低至几美元$ $ EV,同时将其与典型的氦3管的性能进行比较。此外,它是在内部散射方面表征检测器技术之间的差异,以及〜$ $ $ s短中子脉冲的时间重建。数据是在柏林的Helmholtz Zentrum柏林上采集的,该数据在其中安装了多机探测器和Helium-3管,在ESS Test Beamine,V20。使用Fermi-Chopper,将反应器的中子束切成几十$ $ s宽的脉冲,然后到达探测器,该脉冲位于下游几十CM。测量数据显示了派生的和计算出的中子检测效率曲线之间的一致性。数据还提供了有关内部散射效果以及如何减少的详细信息。斩波器分辨率首次与多网格检测器的时机分辨率相当。这允许对时间和能量分辨效应进行详细研究,以及与典型的氦气3管的比较。
The boron-10 based Multi-Grid detector is being developed as an alternative to helium-3 based neutron detectors. At the European Spallation Source, the detector will be used for time-of-flight neutron spectroscopy at cold to thermal neutron energies. The objective of this work is to investigate fine time- and energy-resolved effects of the Multi-Grid detector, down to a few $μ$eV, while comparing it to the performance of a typical helium-3 tube. Furthermore, it is to characterize differences between the detector technologies in terms of internal scattering, as well as the time reconstruction of ~ $μ$s short neutron pulses. The data were taken at the Helmholtz Zentrum Berlin, where the Multi-Grid detector and a helium-3 tube were installed at the ESS test beamline, V20. Using a Fermi-chopper, the neutron beam of the reactor was chopped into a few tens of $μ$s wide pulses before reaching the detector, located a few tens of cm downstream. The data of the measurements show an agreement between the derived and calculated neutron detection efficiency curve. The data also provide fine details on the effect of internal scattering, and how it can be reduced. For the first time, the chopper resolution was comparable to the timing resolution of the Multi-Grid detector. This allowed a detailed study of time- and energy resolved effects, as well as a comparison with a typical helium-3 tube.