Terzina on board NUSES: A pathfinder for EAS Cherenkov Light Detection from space

L. Burmistrov
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引用次数: 6

Abstract

In this paper we introduce the Terzina telescope as a part of the NUSES space mission. This telescope aims to detect Ultra High Energy Cosmic Rays (UHECRs) through the Cherenkov light emission from the extensive air showers (EAS) that they create in the Earth’s atmosphere. The Cherenkov photons are aligned along the shower axis inside about ∼ 0.2 − 1°, so that they become detectable by Terzina when it points towards the Earth’s limb. A sun-synchronous orbit will allow the telescope to observe only the night side of the Earth’s atmosphere. In this contribution, we focus on the description of the telescope detection goals, geometry, optical design and its photon detection camera composed of Silicon Photo-Multipliers (SiPMs). Moreover, we describe the full Monte Carlo simulation chain developed to estimate Terzina’s performance for UHECR detection. The estimate of the radiation damage and light background rates, the readout electronics and trigger logic are briefly described. Terzina will be able to study the potential for future physics missions devoted to UHECR detection and to UHE neutrino astronomy. It is a pathfinder for missions like POEMMA or future constellations of similar satellites to NUSES.
在NUSES上的Terzina:从太空进行EAS切伦科夫光探测的探路者
在本文中,我们介绍了作为NUSES空间任务的一部分的Terzina望远镜。这台望远镜旨在通过切伦科夫光发射探测超高能宇宙射线(uhecr),这些辐射来自于地球大气中产生的大面积空气阵雨(EAS)。切伦科夫光子沿着淋浴轴在内部排列约0.2−1°,因此当它指向地球的边缘时,它们就能被Terzina探测到。太阳同步轨道将允许望远镜只观察地球大气层的夜间。在这篇文章中,我们重点描述了望远镜的探测目标、几何结构、光学设计及其由硅光倍增器(SiPMs)组成的光子探测相机。此外,我们描述了开发的完整蒙特卡罗模拟链,以估计Terzina在UHECR检测中的性能。简要描述了辐射损伤和光背景速率的估计、读出电子器件和触发逻辑。Terzina将能够研究未来致力于uher探测和UHE中微子天文学的物理任务的潜力。它是像POEMMA这样的任务的探路者,或者是未来与NUSES类似的卫星星座。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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