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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Precision measurement of 0.5 GeV-3 TeV electrons and positrons using the AMS Electromagnetic Calorimeter
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Precision measurement of 0.5 GeV-3 TeV electrons and positrons using the AMS Electromagnetic Calorimeter

机译:使用AMS电磁热量计精确测量0.5 GeV-3 TeV电子和正电子

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摘要

The Alpha Magnetic Spectrometer, AMS, is successfully collecting data on the International Space Station since its installation on May 19, 2011. One of the main objectives of AMS is the precision measurement of high energy cosmic ray electrons and positrons. The key detector for this measurement is the Electromagnetic Calorimeter. Reconstruction of electrons and positrons in the calorimeter uses a 3-dimensional shower parametrization, which accounts for the detector specifics: finite size of the calorimeter, non-uniform efficiency of the signal collection, and saturation effects due to the electronics and due to high energy density in the active calorimeter elements. This technique provides AMS with a precision energy measurement of electrons and positrons up to several TeV as well as an excellent rejection of the proton background.
机译:自2011年5月19日安装以来,Alpha电磁光谱仪(AMS)已成功在国际空间站上收集数据。AMS的主要目标之一是对高能宇宙射线电子和正电子的精确测量。此测量的关键检测器是电磁热量计。量热计中电子和正电子的重建使用3维淋浴参数化,这说明了探测器的具体情况:量热计的尺寸有限,信号收集的效率不均匀以及由于电子设备和高能量而产生的饱和效应主动量热仪元件中的密度。这项技术为AMS提供了精确的电子和正电子能量测量(高达几个TeV)以及对质子本底的出色抑制。

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