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Signal Processing for the ATLAS Liquid Argon Calorimeter : studies and implementation

机译:ATLAS液态氩量热仪的信号处理:研究与实现

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摘要

The ATLAS detector operated successfully in the LHC studying the pp collisions produced with an energy up to 8 TeV in the center of mass. During the period from 2009 to 2012, called the LHC Run 1, up to more than 36 independent collisions were produced every 50 ns at the LHC. The ATLAS detector has a set of calorimeters measuring the energy of different types of particles. The liquid argon calorimeters work by ionization of their active material and the free electrons are collected by electrodes at high voltages. The generated current signal has a well known pulse shape. Multiple samples of the analog signal are collected and digital signal processing techniques are used to extract its amplitude which is related to the energy deposited. The signal pulse is relatively long (up to 400 ns) and the probability of background events happening in the same detector area during that interval is high. A technique called optimal filtering is used to minimize the effects of such pile-up. In the next data taking period, the luminosity will be higher and new techniques are being considered to mitigate the impact of the pile-up induced noise. Such techniques are also being envisaged for usage in the ATLAS trigger. This paper will discuss these techniques and their implementation in the new ATCA standard. A prototype using the processing power of FPGAs is being prepared for studies and may be used when the LHC returns to operation in 2015.
机译:ATLAS探测器在大型强子对撞机中成功运行,研究了在质心处能量高达8 TeV产生的pp碰撞。在2009年至2012年期间,称为LHC运行1,LHC每50 ns产生多达36次独立碰撞。 ATLAS检测器具有一组量热计,用于测量不同类型颗粒的能量。液态氩量热计通过其活性物质的电离工作,自由电子在高压下被电极收集。产生的电流信号具有众所周知的脉冲形状。收集模拟信号的多个样本,并使用数字信号处理技术提取其振幅,该振幅与沉积的能量有关。信号脉冲相对较长(最高400 ns),并且在该间隔内同一检测器区域中发生背景事件的可能性很高。使用一种称为最佳滤波的技术来最小化这种堆积的影响。在下一个数据采集期间,发光度将更高,并且正在考虑采用新技术来减轻堆积引起的噪声的影响。还设想将此类技术用于ATLAS触发器。本文将讨论这些技术及其在新的ATCA标准中的实现。正在准备使用FPGA的处理能力的原型进行研究,并可能在LHC于2015年恢复运行时使用。

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    Oliveira Damazio, D;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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