论文标题
伽玛射线天文学的双层水切伦科夫检测器阵列
A Double Layered Water Cherenkov Detector Array for Gamma-Ray Astronomy
论文作者
论文摘要
地面颗粒检测现在是TEV伽马射线天文学的公认方法。在充满水的检测单元中产生的Cherenkov光是一种经过证明且具有成本效益的方法。在这里,我们讨论了对未来南部宽场伽马射线观测站(SWGO)的优化。在这种情况下,我们研究了一种新型的配置,其中阵列中的每个水Cherenkov检测器(WCD)单元包括两个带有黑色或反射壁的腔室和每个腔室中的单个光电构成管(PMT)。我们发现,这是一种具有成本效益的方法,可改善有关当前方法的WCD阵列的性能。一个浅的下腔室,面向向下的PMT可以实现MUON标记,并识别强子诱发的空气淋浴,这是伽马射线天文学背景的主要来源。我们研究了γ/强子分离能力以及可实现的角度分辨率如何取决于该构型中检测器单元的几何形状和壁反射率。我们发现,在这两个腔室中的反射表面的帮助下,在这种双层配置中可以实现出色的角度分辨率,背景排斥能力和低能响应。
Ground-level particle detection is now a well-established approach to TeV gamma-ray astronomy. Detection of Cherenkov light produced in water-filled detection units is a proven and cost-effective method. Here we discuss the optimization of the units towards the future Southern Wide-field Gamma-ray Observatory (SWGO). In this context, we investigate a new type of configuration in which each water Cherenkov detector (WCD) unit in the array comprises two chambers with black or reflective walls and a single photomultiplier tube (PMT) in each chamber. We find that this is a cost-effective approach that improves the performance of the WCD array with respect to current approaches. A shallow lower chamber with a PMT facing downwards enables muon tagging and the identification of hadron-induced air showers, which are the primary source of background in gamma-ray astronomy. We investigate how gamma/hadron separation power and achievable angular resolution depend on the geometry and wall reflectivity of the detector units in this configuration. We find that excellent angular resolution, background rejection power and low-energy response are achievable in this double-layer configuration, with the aid of reflective surfaces in both chambers.