论文标题

低于10 PS电磁淋浴的时间标记,带有闪烁的眼镜和sipms

Sub-10 ps time tagging of electromagnetic showers with scintillating glasses and SiPMs

论文作者

Lucchini, Marco T., Benaglia, Andrea, Gundacker, Stefan, Illare, Jack, Lecoq, Paul, Margaryan, Alfred A., Margaryan, Ashot A., Pauwels, Kristof, Auffray, Etiennette

论文摘要

高能量物理社区最近将$ e^+E^ - $ higgs工厂确定为下一代对撞机实验之一,在CERN上高光度LHC计划完成后。与Hadron Colliders相比,此类煤层的中等辐射水平与Hadron Colliders相比,可以允许使用较低的辐射型技术来构建较低的技术粒子。这个机会引发了人们对闪烁眼镜的开发的重新兴趣,用于仪器的仪器,例如均匀的量热计。尽管与许多闪烁的晶体相比,这种闪烁体的性能通常在光产率和辐射公差方面保持较低,但近年来取得了很大的进步。在本文中,我们讨论了掺杂葡萄干的碱性燃料磷酸闪烁眼镜的时间分辨率,使用硅照相机读取,以检测单个带电的轨道,并在不同位置沿着电磁淋浴的纵向开发,分别使用150〜GEV Pions和100 〜GEV Electron beams在Cern sps Sps Sps Spers s h2 H2 H2 H2 H2 H2 H2。在两种情况下,分别测量了14.4〜PS和5-7〜PS的单个传感器时间分辨率。有了这样的性能,目前的技术有可能在对撞机实验中解决未来探测器的新兴需求:测量单个带电颗粒的飞行时间以及量热计内部淋浴的中性颗粒和阵雨的时间的发展。

The high energy physics community has recently identified an $e^+e^-$ Higgs factory as one of the next-generation collider experiments, following the completion of the High Luminosity LHC program at CERN.The moderate radiation levels expected at such colliders compared to hadron colliders, enable the use of less radiation tolerant but cheaper technologies for the construction of the particle detectors. This opportunity has triggered a renewed interest in the development of scintillating glasses for the instrumentation of large detector volumes such as homogeneous calorimeters. While the performance of such scintillators remains typically inferior in terms of light yield and radiation tolerance compared to that of many scintillating crystals, substantial progress has been made over the recent years. In this paper we discuss the time resolution of cerium-doped Alkali Free Fluorophosphate scintillating glasses, read-out with silicon photo-multipliers in detecting single charged tracks and at different positions along the longitudinal development of an electromagnetic shower, using respectively 150~GeV pions and 100~GeV electron beams at the CERN SPS H2 beam line. A single sensor time resolution of 14.4~ps and 5-7~ps was measured respectively in the two cases. With such a performance the present technology has the potential to address an emerging requirement of future detectors at collider experiments: measuring the time-of-flight of single charged particles as well as that of neutral particles showering inside the calorimeter and the time development of showers.

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