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R&D of the CEPC scintillator-tungsten ECAL

机译:CEPC闪烁仪的研发tungsten ecal

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摘要

The circular electron and positron collider (CEPC) was proposed as a future Higgs factory. To meet the physics requirements, a particle flow algorithm-oriented calorimeter system with high energy resolution and precise reconstruction is considered. A sampling calorimeter with scintillator-tungsten sandwich structure is selected as one of the electromagnetic calorimeter (ECAL) options due to its good performance and relatively low cost. We present the design, the test and the optimization of the scintillator module read out by silicon photomultiplier (SiPM), including the design and the development of the electronics. To estimate the performance of the scintillator and SiPM module for particles with different energy, the beam test of a mini detector prototype without tungsten shower material was performed at the E3 beams in Institute of High Energy Physics (IHEP). The results are consistent with the expectation. These studies provide a reference and promote the development of particle flow electromagnetic calorimeter for the CEPC.
机译:提出了圆形电子和正电子对撞机(CEPC)作为未来的希格斯工厂。为了满足物理要求,考虑了具有高能量分辨率和精确重建的粒子流量算法的量热计系统。带有闪烁剂 - 丁格斯坦三明治结构的采样热量表被选为电磁热量计(ECAL)选项之一,因为其性能良好且成本相对较低。我们介绍了由硅光电塑料(SIPM)读取的闪烁体模块的设计,测试和优化,包括电子设备的设计和开发。为了估计具有不同能量的颗粒的闪烁体和SIPM模块的性能,在高能量物理学研究所(IHEP)的E3梁上进行了迷你探测器原型的光束测试。结果与期望一致。这些研究提供了参考,并促进了CEPC的颗粒流电磁量热仪的发展。

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