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Particle tracking at cryogenic temperatures: the Fast Annihilation Cryogenic Tracking (FACT) detector for the AEgIS antimatter gravity experiment

机译:低温下的颗粒跟踪:用于AEgIS反物质重力实验的快速An灭低温跟踪(FACT)检测器

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摘要

The AEgIS experiment is an interdisciplinary collaboration between atomic, plasma and particle physicists, with the scientific goal of performing the first precision measurement of the Earth’s gravitational acceleration on antimatter. The principle of the experiment is as follows: cold antihydrogen atoms are synthesized in a Penning-Malmberg trap and are Stark accelerated towards\uda moire deflectometer, the classical counterpart of an atom interferometer, and annihilate on a position sensitive detector. Crucial to the success of the experiment is an antihydrogen detector that will be used to demonstrate the production of antihydrogen and also to measure the temperature of the anti-atoms and the creation of a beam. The operating requirements for the detector are very challenging: it must operate at close to 4 K inside a 1 T solenoid magnetic field and identify the annihilation of the antihydrogen atoms that are produced during the 1 µs period of antihydrogen production. Our solution — called the FACT detector — is based on a novel multi-layer scintillating fiber tracker with SiPM readout and off the shelf FPGA based readout system. This talk will present the design of the FACT detector and detail the operation of the detector in the context of the AEgIS experiment.
机译:AEgIS实验是原子,等离子体和粒子物理学家之间的跨学科合作,其科学目标是对反物质上的地球重力加速度进行首次精确测量。实验的原理如下:冷的反氢原子是在Penning-Malmberg阱中合成的,并被Stark加速向原子干涉仪的经典对应物\ uda moire偏转仪,并在位置敏感探测器上an灭。实验成功的关键在于抗氢检测器,该检测器将用于演示抗氢的产生,并用于测量抗原子的温度和射束的产生。检测器的操作要求非常具有挑战性:它必须在1 T螺线管磁场内以接近4 K的频率运行,并识别在产生1 s的氢的过程中产生的反氢原子的ni灭。我们的解决方案(称为FACT检测器)基于具有SiPM读数和基于FPGA的现成读数系统的新型多层闪烁光纤跟踪器。本演讲将介绍FACT检测器的设计,并详细介绍在AEgIS实验中检测器的操作。

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