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Cosmic ray oriented performance studies for the JEM-EUSO first level trigger

机译:JEM-EUSO一级扳机的宇宙射线定向性能研究

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摘要

JEM-EUSO is a space mission designed to investigate Ultra-High Energy Cosmic Rays and Neutrinos (E > 5 • 10~(15) eV) from the International Space Station (ISS). Looking down from above its wide angle telescope is able to observe their air showers and collect such data from a very wide area. Highly specific trigger algorithms are needed to drastically reduce the data load in the presence of both atmospheric and human activity related background light, yet retain the rare cosmic ray events recorded in the telescope. We report the performance in offline testing of the first level trigger algorithm on data from JEM-EUSO prototypes and laboratory measurements observing different light sources: data taken during a high altitude balloon flight over Canada, laser pulses observed from the ground traversing the real atmosphere, and model landscapes reproducing realistic aspect ratios and light conditions as would be seen from the ISS itself. The first level trigger logic successfully kept the trigger rate within the permissible bounds when challenged with artificially produced as well as naturally encountered night sky background fluctuations and while retaining events with general air-shower characteristics.
机译:JEM-EUSO是一项太空任务,旨在研究国际空间站(ISS)的超高能宇宙射线和中微子(E> 5•10〜(15)eV)。从其广角望远镜上方俯视时,可以观察到它们的风淋并从非常广阔的区域收集此类数据。在存在与大气和人类活动有关的背景光的情况下,需要高度特定的触发算法来大大减少数据负载,同时保留望远镜中记录的罕见宇宙射线事件。我们报告了根据JEM-EUSO原型数据和观察不同光源的实验室测量数据进行的一级触发算法的离线测试的性能:在加拿大上空的高空气球飞行期间获取的数据,从地面穿越真实大气层观察到的激光脉冲,并从ISS本身看到的模拟景观再现了真实的纵横比和光照条件。一级触发逻辑在受到人工产生的挑战以及自然遇到的夜空背景波动的挑战时,成功地将触发率保持在允许的范围内,同时保留了具有一般淋浴功能的事件。

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