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Upgraded readout electronics for the ATLAS LAr calorimeter at the phase I of LHC

机译:大型强子对撞机第一阶段的ATLAS LAr量热仪的升级读出电子设备

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摘要

The ATLAS Liquid Argon (LAr) calorimeters produce a total of 182,486 signals which are digitized and processed by the front-end and back-end electronics at every triggered event. In addition, the front-end electronics is summing analog signals to provide coarsely grained energy sums, called trigger towers, to the first-level trigger system, which is optimized for nominal LHC luminosities. However, the pile-up noise expected during the high luminosity phases of LHC will be increased by factors of 3-7. An improved spatial granularity of the trigger primitives is therefore proposed in order to improve the identification performance for trigger signatures, like electrons or photons, at high background rejection rates. The general concept of the upgraded LAr calorimeter readout together with the various electronics components to be developed for such a complex system is presented. The R&D activities and architectural studies undertaken by the ATLAS LAr Calorimeter group are described.
机译:ATLAS液态氩(LAr)量热仪产生总共182,486个信号,在每次触发事件时,这些信号都会由前端和后端电子设备进行数字化处理。此外,前端电子设备正在对模拟信号求和,以将粗粒度的能量总和(称为触发塔)提供给一级触发系统,该系统针对标称LHC发光度进行了优化。但是,在LHC的高发光度阶段中预期的堆积噪声将增加3-7倍。因此,提出了改进的触发原语的空间粒度,以便在高背景抑制率下提高对触发签名(如电子或光子)的识别性能。介绍了升级后的LAr量热仪读数的一般概念,以及针对这种复杂系统要开发的各种电子组件。描述了ATLAS LAr量热仪小组开展的研发活动和建筑研究。

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