论文标题

使用火炬检测器的带电颗粒的皮秒时间安排

Picosecond timing of charged particles using the TORCH detector

论文作者

Cicala, Maria Flavia, Bhasin, Srishti, Blake, Thomas, Brook, Nick H., Conneely, Thomas, Cussans, David, van Dijk, Maarten W. U., Forty, Roger, Frei, Christoph, Gabriel, Emmy P. M., Gao, Rui, Gershon, Timothy, Gys, Thierry, Hadavizadeh, Thomas, Hancock, Thomas Henry, Harnew, Neville, Jones, Thomas, Kreps, Michal, Milnes, James, Piedigrossi, Didier, Rademacker, Jonas, Smallwood, Jennifer Clare

论文摘要

Torch是一个大区域,高精度飞行时间(TOF)检测器,旨在在2-20 GEV $/C $动量范围内提供带电的粒子识别。迅速的Cherenkov光子由带电的Hadron发出时,它们穿越10mm石英散热器时会传播到检测器的外围,在那里它们聚焦在一系列微通道板光层次光层管(MCP-PMTS)上。光子的位置和到达时间用于推断粒子在散热器中的进入时间,以根据其TOF识别Hadron。 MCP-PMT是与工业合作伙伴一起开发的,以满足火炬检测器的严格要求。要求包括细分的阳极,出色的时间分辨率和寿命长。在大约1000万的飞行距离上,KAON和带有10GEV $/C $动量的TOF的差异为35PS,导致每个轨道时正时的分辨率分辨率为10-15ps。每个强子平均检测到30个光子,这转化为70PS的单光子时间分辨率。火炬研发计划旨在通过实验室和梁测试来证明检测器概念的有效性,并提出结果。在梁测试中达到了70-100PS的定时分辨率,以实现火炬设计目标。实验室计时测试包括操作与火炬读数电子产品相连的MCP-PMT。测量了约50PS的时间分辨率,满足了火炬目标正时解决方案。

TORCH is a large-area, high-precision time-of-flight (ToF) detector designed to provide charged-particle identification in the 2-20 GeV$/c$ momentum range. Prompt Cherenkov photons emitted by charged hadrons as they traverse a 10mm quartz radiator are propagated to the periphery of the detector, where they are focused onto an array of micro-channel plate photomultiplier tubes (MCP-PMTs). The position and arrival times of the photons are used to infer the particles' time of entry in the radiator, to identify hadrons based on their ToF. The MCP-PMTs were developed with an industrial partner to satisfy the stringent requirements of the TORCH detector. The requirements include a finely segmented anode, excellent time resolution, and a long lifetime. Over an approximately 10m flight distance, the difference in ToF between a kaon and a pion with 10GeV$/c$ momentum is 35ps, leading to a 10-15ps per track timing resolution requirement. On average 30 photons per hadron are detected, which translates to a single-photon time resolution of 70ps. The TORCH research and development program aims to demonstrate the validity of the detector concept through laboratory and beam tests, results from which are presented. A timing resolution of 70-100ps was reached in beam tests, approaching the TORCH design goal. Laboratory timing tests consist of operating the MCP-PMTs coupled to the TORCH readout electronics. A time resolution of about 50ps was measured, meeting the TORCH target timing resolution.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源