论文标题
中子科学的粒子物理读数电子和新颖的探测器技术
Particle Physics Readout Electronics and Novel Detector Technologies for Neutron Science
论文作者
论文摘要
传统的热中子探测器基于氦3作为转换和检测材料,这是由于其较大的中子横截面。鉴于升级和建造了几个中子散射设施,例如欧洲散布来源(ESS)和同时缺乏氦3,因此引入了新的检测技术。最突出的是,使用固体转换剂与大型热中子横截面,例如Gadolinium和Boron。这些材料被中子击中时会发出带电的颗粒。然后,该技术依赖于对带电粒子的检测和/或跟踪,如粒子物理的检测器中。同时,与传统的中子探测器相比,这需要增加读数通道的数量级增加,这也需要增加位置分辨率的优势。一个主要的例子是由CERN气态检测器组和ESS探测器组共同开发的NMX仪器的Gadolinium Gas Electron乘数(GDGEM)检测器。 在这一贡献中,我们将提出将粒子物理探测器和读数电子设备转移到中子科学的一些努力。我们采用了最初为Atlas New小型车轮升级设计的VMM3A芯片,以读取基于宝石的中子探测器。 TimePix3芯片用于中子时间投影室,以及读取中子敏感的微通道板检测器。这些读数芯片集成到RD51协作的可扩展读数系统中。
Traditional thermal neutron detectors are based on Helium-3 as conversion and detection material due to its large neutron cross-section. In light of the upgrade and construction of several neutron scattering facilities such as the European Spallation Source (ESS) and a simultaneous shortage of Helium-3, new detection technologies have been introduced. The most prominent one is to use solid converts with a large thermal neutron cross-section such as Gadolinium and Boron. Those materials emit charged particles when hit by a neutron. The technique then relies on detection and/or tracking of the charged particle, as in detectors of particle physics. At the same time, this requires an increase of the readout channels by an order of magnitude with the advantage of also increasing the position resolution by the same amount compared to traditional neutron detectors. A prime example is the Gadolinium Gas Electron Multiplier (GdGEM) detector for the NMX instrument at ESS jointly developed by the CERN Gaseous Detector Group and the ESS Detector Group. In this contribution, some of our efforts to transfer particle physics detectors and readout electronics to neutron science will be presented. We employed the VMM3a chip, originally designed for the ATLAS New Small Wheel upgrade, to read out a GEM-based neutron detector. The Timepix3 chip is employed in a neutron Time Projection Chamber as well as to read out a neutron-sensitive Micro-Channel Plate detector. Those readout chips are integrated into the Scalable Readout System of the RD51 collaboration.