高亮度强子对撞机ATLAS强子瓦量热计的改进

Q3 Physics and Astronomy
P. Starovoitov
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引用次数: 4

摘要

Tile量热计(TileCal)是一种覆盖ATLAS实验中心区域的采样强子量热计,以钢为吸收体,塑料闪烁体为活性介质。LHC的高亮度阶段预计将于2029年开始,其亮度是LHC标称瞬时亮度的五倍。TileCal将需要新的电子设备来满足1MHz触发器、更高的环境辐射的要求,并确保在高堆积条件下具有更好的性能。开关探测器TileCal电子设备将在2026–2028年关闭期间更换。来自每个TileCal单元的光电倍增管(PMT)信号将被数字化,并直接发送到后端电子设备,在那里重建、存储信号,并以40MHz的速率发送到触发器的第一级。这将在触发系统使用的量热计信号中提供更好的精度,并将允许开发更复杂的触发算法。模块化前端电子设备具有耐辐射、商用、现成组件和冗余设计,可在单点故障时保持系统性能。通过现代现场可编程门阵列(FPGA)和高达9.6 Gb/s的高速光纤链路,实现了与探测器外电子设备的定时、控制和通信接口。TileCal升级计划包括广泛的研发和测试光束研究。2019年8月,在ATLAS中插入了一个与现有系统具有反向兼容性的演示器模块,用于在实际探测器条件下进行测试。将讨论探测器内外系统的持续发展,以及预期的性能特征和电子样机测试光束活动的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Upgrade of ATLAS Hadronic Tile Calorimeter for the High-Luminosity LHC
The Tile Calorimeter (TileCal) is a sampling hadronic calorimeter covering the central region of the ATLAS experiment, with steel as the absorber and plastic scintillators as the active medium. The High-Luminosity phase of the LHC, delivering five times the LHC’s nominal instantaneous luminosity, is expected to begin in 2029. TileCal will require new electronics to meet the requirements of a 1 MHz trigger, higher ambient radiation, and to ensure better performance under high pile-up conditions. Both the on- and off-detector TileCal electronics will be replaced during the shut-down of 2026–2028. The photomultiplier tube (PMT) signals from every TileCal cell will be digitized and sent directly to the back-end electronics, where the signals are reconstructed, stored, and sent to the first level of the trigger at a rate of 40 MHz. This will provide better precision in the calorimeter signals used by the trigger system and will allow the development of more complex trigger algorithms. The modular front-end electronics feature radiation-tolerant, commercial, off-the-shelf components and a redundant design to maintain system performance in case of single points of failure. The timing, control, and communication interface with the off-detector electronics is implemented with modern Field-Programmable Gate Arrays (FPGAs) and high-speed fiber optic links running up to 9.6 Gb/s. The TileCal upgrade program has included extensive R&D and test beam studies. A Demonstrator module with reverse compatibility with respect to the existing system was inserted in ATLAS in August 2019 for testing in actual detector conditions. The ongoing developments for on- and off-detector systems, together with expected performance characteristics and results of test-beam campaigns with the electronics prototypes, will be discussed.
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来源期刊
Instruments
Instruments Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
0.00%
发文量
70
审稿时长
11 weeks
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