Validation of standardized data formats and tools for ground-level particle-based gamma-ray observatories
A. Albert, R. Alfaro, J.C. Arteaga-Vel\'azquez, H.A. Ayala Solares, R., Babu, E. Belmont-Moreno, C. Brisbois, K.S. Caballero-Mora, T. Capistr\'an, A., Carrami\~nana, S. Casanova, O. Chaparro-Amaro, U. Cotti, J. Cotzomi, S., Couti\~no de Le\'on, E. De la Fuente, R. Diaz Hernandez

TL;DR
This paper demonstrates that ground-based particle detector data, like from HAWC, can be formatted with GADF and analyzed using Gammapy, enabling multi-instrument joint analysis and fostering open data practices in gamma-ray astronomy.
Contribution
It shows the compatibility of HAWC data with the GADF standard and validates analysis with Gammapy, expanding open-source tools to particle array observatories.
Findings
Reproduced HAWC results with Gammapy and GADF
Produced joint Crab spectrum fit from six experiments
Confirmed compatibility of particle array data with GADF
Abstract
Ground-based gamma-ray astronomy is still a rather young field of research, with strong historical connections to particle physics. This is why most observations are conducted by experiments with proprietary data and analysis software, as it is usual in the particle physics field. However in recent years, this paradigm has been slowly shifting towards the development and use of open-source data formats and tools, driven by upcoming observatories such as the Cherenkov Telescope Array (CTA). In this context, a community-driven, shared data format (the gamma-astro-data-format or GADF) and analysis tools such as Gammapy and ctools have been developed. So far these efforts have been led by the IACT community, leaving out other types of ground-based gamma-ray instruments.We aim to show that the data from ground particle arrays, such as the High-Altitude Water Cherenkov (HAWC) observatory, is…
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