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The Timepix Telescope for high performance particle tracking

机译:用于高性能粒子跟踪的Timepix望远镜

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摘要

The Timepix particle tracking telescope has been developed as part of the LHCb VELO Upgrade project, supported by the Medipix Collaboration and the AIDA framework. It is a primary piece of infrastructure for the VELO Upgrade project and is being used for the development of new sensors and front end technologies for several upcoming LHC trackers and vertexing systems. The telescope is designed around the dual capability of the Timepix ASICs to provide information about either the deposited charge or the timing information from tracks traversing the 14 × 14 mm matrix of 55 × 55 μm pixels. The rate of reconstructed tracks available is optimised by taking advantage of the shutter driver readout architecture of the Timepix chip, operated with existing readout systems. Results of tests conducted in the SPS North Area beam facility at CERN show that the telescope typically provides reconstructed track rates during the beam spills of between 3.5 and 7.5 kHz, depending on beam conditions. The tracks are time stamped with 1 ns resolution with an efficiency of above 98% and provide a pointing resolution at the centre of the telescope of ~1.6 μm. By dropping the time stamping requirement the rate can be increased to ~15 kHz, at the expense of a small increase in background. The telescope infrastructure provides CO_2 cooling and a flexible mechanical interface to the device under test, and has been used for a wide range of measurements during the 2011-2012 data taking campaigns.
机译:Timepix粒子跟踪望远镜是LHCb VELO升级项目的一部分,由Medipix Collaboration和AIDA框架提供支持。它是VELO升级项目的基础架构的主要部分,并被用于开发多个即将推出的LHC跟踪器和顶点系统的新传感器和前端技术。望远镜是围绕Timepix ASIC的双重功能而设计的,它可以提供有关沉积电荷的信息或来自穿越55×55μm像素的14×14 mm矩阵的轨迹的定时信息。通过利用与现有读取系统一起操作的Timepix芯片的快门驱动器读取架构,可以优化可用的重建轨道的速率。在欧洲核子研究组织(CERN)的SPS北区光束设施中进行的测试结果表明,根据光束条件的不同,该望远镜通常会在3.5至7.5 kHz的光束泄漏期间提供重构的跟踪速率。这些轨道带有1 ns分辨率的时间戳,效率高达98%以上,并在望远镜中心提供了约1.6μm的指向分辨率。通过降低时间戳要求,可以将速率增加到〜15 kHz,但要以增加背景为代价。望远镜基础设施为被测设备提供CO_2冷却和灵活的机械接口,在2011-2012年的数据采集活动中已被用于各种测量。

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