A data processing system for balloon-borne telescopes
Valentina Scotti, Giuseppe Osteria, Francesco Perfetto

TL;DR
This paper presents a comprehensive data processing system designed for balloon-borne telescopes aimed at studying ultra-high-energy cosmic rays, focusing on data management, instrument control, and environmental challenges during long-duration flights.
Contribution
It introduces a novel data processing system tailored for balloon-based cosmic ray telescopes, addressing high-altitude environmental constraints and long-duration operational requirements.
Findings
Successfully manages data and instrument control during 100-day flights.
Handles high-altitude environmental challenges such as heat dissipation.
Supports precise event tagging and synchronization for cosmic ray detection.
Abstract
The JEM-EUSO Collaboration aims at studying Ultra High Energy Cosmic Rays (UHECR) from space. To reach this goal, a series of pathfinder missions has been developed to prove the observation principle and to raise the technological readiness level of the instrument. Among these, the EUSO-SPB2 (Extreme Universe Space Observatory on a Super Pressure Balloon, mission two) foresees the launch of two telescopes on an ultra-long duration balloon. One is a fluorescence telescope designed to detect UHECR via the UV fluorescence emission of the showers in the atmosphere. The other one measures direct Cherenkov light emission from lower energy cosmic rays and other optical backgrounds for cosmogenic tau neutrino detection. In this paper, we describe the data processing system which has been designed to perform data management and instrument control for the two telescopes. It is a complex which…
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Taxonomy
TopicsAstronomical Observations and Instrumentation · Astrophysics and Cosmic Phenomena · Gamma-ray bursts and supernovae
