English

First Detection of Extensive Air Showers Using a Small-Aperture Fluorescence Telescope

Instrumentation and Methods for Astrophysics 2026-05-07 v1 High Energy Astrophysical Phenomena

Abstract

We report on the successful detection of extensive air showers (EAS) generated by ultra-high-energy cosmic rays using a small-aperture fluorescence telescope (FT) deployed at the Mount Aragats high-altitude research station. The instrument is equipped with a 25 cm diameter Fresnel lens and operates with a 2.625 μ\mus time resolution. To our knowledge, this represents the first-ever observation of EAS achieved with an FT of such a compact aperture. To isolate shower events from the observational data, we implemented two independent event selection pipelines: a conventional cut-based analysis and a deep learning approach utilizing neural networks. Both algorithms successfully identified over 15 high-confidence EAS tracks from data acquired during clear, moonless nights. We present selected event topologies and detail the background rejection methodology employed to discriminate true shower tracks from spurious focal-plane signals mimicking EAS signatures. These results provide an important proof-of-concept for the advancement of fluorescence detection techniques, demonstrating their viability for forthcoming ground-based and space-borne missions. Future efforts will focus on primary energy reconstruction utilizing a previously developed neural-network framework.

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Cite

@article{arxiv.2605.05004,
  title  = {First Detection of Extensive Air Showers Using a Small-Aperture Fluorescence Telescope},
  author = {M. Zotov and A. Trusov and P. Klimov and K. Asatryan and A. Belov and G. Gabaryan and V. Kudryavtsev and A. Murashov},
  journal= {arXiv preprint arXiv:2605.05004},
  year   = {2026}
}

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8 pages