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Radioactive source calibration technique for the CMS hadron calorimeter

机译:CMS强子量热仪的放射源标定技术

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Relative calibration of the scintillator tiles used in the hadronic calorimeter for the Compact Muon Solenoid detector at the CERN Large Hadron Collider is established and maintained using a radioactive source technique. A movable source can be positioned remotely to illuminate each scintillator tile individually, and the resulting photo-detector current is measured to provide the relative calibration. The unique measurement technique described here makes use of the normal high-speed data acquisition system required for signal digitization at the 40 MHz collider frequency. The data paths for collider measurements and source measurements are then identical, and systematic uncertainties associated with having different signal paths are avoided. In this high-speed mode, the source signal is observed as a Poisson photo-electron distribution with a mean that is smaller than the width of the electronics noise (pedestal) distribution. We report demonstration of the technique using prototype electronics for the complete readout chain and show the typical response observed with a 144 channel test beam system. The electronics noise has a root-mean l-square of 1.6 least counts, and a 1 mCi source produces a shift of the mean value of 0.1 least counts. Because of the speed of the data acquisition system, this shift can be measured to a statistical precision better than a fraction of a percent on a millisecond time scale. The result is reproducible to better than 2% over a time scale of 1 month. (C) 2003 Elsevier B.V. All rights reserved. [References: 20]
机译:在CERN大型强子对撞机上的紧凑型μ子电磁线圈探测器的强子热量计中使用的闪烁体砖的相对校准是使用放射源技术建立和维护的。可以将可移动源放置在远处,以分别照亮每个闪烁器瓦片,然后测量所得的光电探测器电流以提供相对校准。此处描述的独特测量技术利用了以40 MHz对撞机频率进行信号数字化所需的常规高速数据采集系统。这样,对撞机测量和源测量的数据路径是相同的,并且避免了与具有不同信号路径相关的系统不确定性。在这种高速模式下,源信号被观察为泊松光电子分布,其平均值小于电子噪声(基座)分布的宽度。我们报告了使用原型电子设备进行完整读出链的技术演示,并显示了使用144通道测试光束系统观察到的典型响应。电子噪声的均方根平方为1.6最小计数,而1 mCi源产生的平均值偏移为0.1最小计数。由于数据采集系统的速度,可以将这种偏移测量的统计精度好于毫秒级的百分之一。在1个月的时间内,结果可重现2%以上。 (C)2003 Elsevier B.V.保留所有权利。 [参考:20]

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