论文标题
梅赛德斯水切伦科夫探测器
The Mercedes water Cherenkov detector
论文作者
论文摘要
提出了一个带有三个光电倍增管(PMTS)的小型单层水切伦科夫检测器的概念,以$ 120^{\ circ} $ star configuration(\ emph {Mercedes} Water Cherenkov检测器)放置在其底部。将PMT放置在带有可调节倾斜度的车站的侧壁附近,可以安装在水中或外部或外部。为了说明此概念的技术可行性并获得其成本的一阶估计,工程设计得到了详细阐述。讨论了这些站点对低能式空气淋浴(EAS)电子,光子和兆恩斯的敏感性,无论是紧凑而稀疏的阵列配置。结果表明,使用机器学习技术对PMT信号的强度和时间模式的分析可以实现Muons的标记,从而为TEV淋浴实现了出色的伽马/强体歧视。 这个概念最小化了车站的生产和维护成本,从而可以进行高度灵活和快速的安装。因此,梅赛德斯水切伦科夫探测器(WCD)非常适合用于覆盖低能的延长能量范围的高海拔大型伽马射线观测站,从而弥补了卫星和地面测量之间的间隙,以极大的能量区域,超出了PEV量表。
The concept of a small, single-layer water Cherenkov detector, with three photomultiplier tubes (PMTs), placed at its bottom in a $120^{\circ}$ star configuration (\emph{Mercedes} Water Cherenkov Detector) is presented. The PMTs are placed near the lateral walls of the stations with an adjustable inclination and may be installed inside or outside the water volume. To illustrate the technical viability of this concept and obtain a first-order estimation of its cost, an engineering design was elaborated. The sensitivity of these stations to low energy Extensive Air Shower (EAS) electrons, photons and muons is discussed, both in compact and sparse array configurations. It is shown that the analysis of the intensity and time patterns of the PMT signals, using machine learning techniques, enables the tagging of muons, achieving an excellent gamma/hadron discrimination for TeV showers. This concept minimises the station production and maintenance costs, allowing for a highly flexible and fast installation. Mercedes Water Cherenkov Detectors (WCDs) are thus well-suited for use in high-altitude large gamma-ray observatories covering an extended energy range from the low energies, closing the gap between satellite and ground-based measurements, to very high energy regions, beyond the PeV scale.