JEM-EUSO项目概述,用于研究来自太空的超高能量宇宙射线

M. Casolino, E. Parizot
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引用次数: 0

摘要

超高能量宇宙射线(uhecr)提供了一个独特的机会,可以在人造加速器无法达到的能量下研究宇宙。地面观测站的观测已经澄清了这些粒子的几个特征,但它们的起源、性质和加速机制仍然不清楚,主要是由于它们的通量极低。天基天文台有可能增加统计数据,高达几个数量级,并将能够覆盖整个天空,允许对光谱和到达方向进行直接比较,但探测器的设计带来了几个巨大的技术挑战。JEM-EUSO项目一直在解决这个问题,试图开辟天基UHECR观测的道路。已经完成了几项任务(在实地:欧索观察团;装有平流层气球:EUSO-Balloon、EUSO-SPB1和EUSO-SPB2;在太空:美国\cite{Klimov2017}, MINI-EUSO)。其他的正在研究中(K-EUSO)或在今后十年提出(POEMMA) \cite{Olinto_2021}。在本工作中,我们报告了JEM-EUSO计划的现状和迄今为止发展的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Overview of the JEM-EUSO program for the study of ultra-high-energy cosmic-rays from space
Ultra High Energy Cosmic Rays (UHECRs) offer a unique chance to study the universe at energies inaccessible by man-made accelerators. Observations by ground based observatories have clarified several characteristics of these particles, but their origin, nature, and acceleration mechanisms are still unclear, mostly due to their extremely low flux. Space-based observatories have the potential for an increase in statistics, up to several orders of magnitude, and would be able to cover the whole sky, allowing for a direct comparison of spectra and direction of arrival, but the detector design poses several formidable technical challenges. The JEM-EUSO program has been addressing this problem, trying to open the road of space-based UHECR observations. Several missions have already been completed (on the ground: EUSO-TA; with stratospheric ballons: EUSO-Balloon, EUSO-SPB1 and EUSO-SPB2; in space: TUS\cite{Klimov2017}, MINI-EUSO). Others are under study (K-EUSO) or proposed for the next decade (POEMMA)\cite{Olinto_2021}. In this work we report on the status of the JEM-EUSO program and the technology developed so far.
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