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Precision timing calorimeter for high energy physics

机译:高能物理精密定时量热仪

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Scintillator based calorimeter technology is studied with the aim to achieve particle detection with a time resolution on the order of a few 10 ps for photons and electrons at energies of a few GeV and above. We present results from a prototype of a 1.4 × 1.4 × 11.4 cm~3 sampling calorimeter cell consisting of tungsten absorber plates and Cerium-doped Lutetium Yttrium Orthosilicate (LYSO) crystal scintillator plates. The LYSO plates are read out with wave lengths shifting fibers which are optically coupled to fast photo detectors on both ends of the fibers. The measurements with electrons were performed at the Fermilab Test Beam Facility (FTBF) and the CERN SPS H2 test beam. In addition to the baseline setup plastic scintillation counter and a MCP-PMT were used as trigger and as a reference for a time of flight measurement (TOF). We also present measurements with a fast laser to further characterize the response of the prototype and the photo sensors. All data were recorded using a DRS4 fast sampling digitizer. These measurements are part of an R&D program whose aim is to demonstrate the feasibility of building a large scale electromagnetic calorimeter with a time resolution on the order of 10 ps, to be used in high energy physics experiments.
机译:对基于闪烁体的量热仪技术进行了研究,目的是在几GeV或更高的能量下,对光子和电子进行时间分辨率约为10 ps数量级的粒子检测。我们提供了一个1.4×1.4×11.4 cm〜3采样量热计单元的原型结果,该单元由钨吸收板和铈掺杂L正硅酸钇钇(LYSO)晶体闪烁体板组成。用波长移动光纤读出LYSO板,该光纤移动耦合到光纤两端的快速光电检测器。用电子进行的测量是在Fermilab测试束设施(FTBF)和CERN SPS H2测试束处进行的。除基线设置外,塑料闪烁计数器和MCP-PMT还用作触发器,并用作飞行时间测量(TOF)的参考。我们还介绍了使用快速激光进行的测量,以进一步表征原型和光电传感器的响应。所有数据均使用DRS4快速采样数字化仪记录。这些测量是R&D计划的一部分,其目的是证明构建具有10 ps量级的时间分辨率的大型电磁量热仪的可行性,以用于高能物理实验。

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