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R&D studies of the ATLAS LAr calorimeter readout electronics for super-LHC

机译:超级LHC的ATLAS LAr量热仪读出电子设备的研发研究

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Brookhaven National Laboratory, Upton. NY 11973-5000, USA;%The ATLAS Liquid Argon (LAr) calorimeters are high precision, high sensitivity and high granularity detectors. A total of 182,468 signals are digitized and processed real-time on detector, to provide energy and time deposited in each detector element at every occurrence of the LI -trigger. The current readout electronics will need to be upgraded to sustain the higher radiation levels expected with the increase of a factor 10 in luminosity at the LHC in the years ~ 2017. A completely innovative readout scheme is being developed. The front-end readout will send out data continuously at each bunch crossing through high speed radiation resistant optical links, the data will be processed real-time with the possibility of implementing trigger algorithms. This article is an overview of the R&D activities and architectural studies the ATLAS LAr Calorimeter Group is developing: front-end analog and mixed-signal ASIC design, radiation resistance optical-links in SOS, highspeed back-end processing units based on FPGA architectures and power supply distribution schemes.
机译:布鲁克顿国家实验室,厄普顿。美国NY 11973-5000;%ATLAS液体氩(LAr)量热仪是高精度,高灵敏度和高粒度检测器。总共182,468个信号被数字化并在检测器上进行实时处理,以提供每次发生LI触发时沉积在每个检测器元件中的能量和时间。到2017年,大型强子对撞机的发光度将增加10倍,需要对当前的读出电子设备进行升级以维持更高的辐射水平。正在开发一种完全创新的读出方案。前端读数将通过高速抗辐射的光链路在每束交叉处连续发送数据,将对数据进行实时处理,并可能实现触发算法。本文概述了ATLAS LAr量热仪集团正在开展的研发活动和架构研究:前端模拟和混合信号ASIC设计,SOS中的抗辐射光链路,基于FPGA架构的高速后端处理单元以及电源分配方案。

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