The H.E.S.S. Gravitational Wave and Gamma-Ray Burst Follow-Up Programs

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Main Authors: Cornejo, Bernardo, Ashkar, Halim, Cerruti, Matteo, Jaroschewski, Ilja, Pichard, Pierre, Pita, Santiago, Schussler, Fabian
Format: Preprint
Published: 2025
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author Cornejo, Bernardo
Ashkar, Halim
Cerruti, Matteo
Jaroschewski, Ilja
Pichard, Pierre
Pita, Santiago
Schussler, Fabian
author_facet Cornejo, Bernardo
Ashkar, Halim
Cerruti, Matteo
Jaroschewski, Ilja
Pichard, Pierre
Pita, Santiago
Schussler, Fabian
contents Multi-wavelength and multi-messenger astrophysics have experienced rapid growth over the past decade, seeking a complete picture of different cosmic phenomena. Transient sources, in particular, benefit from the input of multi-messenger observations, offering complementary perspectives on the same event while maximizing the detection probability of a rapidly fading signal. In this context, Gravitational Wave (GW) detections serve as perfect triggers for potential counterpart detections. Notably, a GW alert could be associated with a Gamma-Ray Burst (GRB), jetted cataclysmic events produced either by the collision of a binary neutron star system or a core-collapse supernova. These sources also radiate across the electromagnetic spectrum, allowing detection by X- and gamma-ray instruments aboard various satellites and thus enabling multi-wavelength triggering opportunities. The strong interest in minimizing reaction time to capture the full-time evolution of the emission, together with the often challenging localization uncertainties of the alerts, underscores the need for rapid and well-coordinated follow-up programs such as the one developed by the H.E.S.S. Collaboration. This contribution will give an overview of the transient follow-up strategy carried out by the H.E.S.S. Collaboration, from the external alert trigger and the automatic reaction of the observatory to the various analysis steps of the obtained observations. To illustrate this comprehensive strategy, we will show two examples of follow-up observations of both GRBs and GWs, highlighting key results and challenges in the search for an associated high-energy gamma-ray emission.
format Preprint
id arxiv_https___arxiv_org_abs_2510_02687
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The H.E.S.S. Gravitational Wave and Gamma-Ray Burst Follow-Up Programs
Cornejo, Bernardo
Ashkar, Halim
Cerruti, Matteo
Jaroschewski, Ilja
Pichard, Pierre
Pita, Santiago
Schussler, Fabian
High Energy Astrophysical Phenomena
Multi-wavelength and multi-messenger astrophysics have experienced rapid growth over the past decade, seeking a complete picture of different cosmic phenomena. Transient sources, in particular, benefit from the input of multi-messenger observations, offering complementary perspectives on the same event while maximizing the detection probability of a rapidly fading signal. In this context, Gravitational Wave (GW) detections serve as perfect triggers for potential counterpart detections. Notably, a GW alert could be associated with a Gamma-Ray Burst (GRB), jetted cataclysmic events produced either by the collision of a binary neutron star system or a core-collapse supernova. These sources also radiate across the electromagnetic spectrum, allowing detection by X- and gamma-ray instruments aboard various satellites and thus enabling multi-wavelength triggering opportunities. The strong interest in minimizing reaction time to capture the full-time evolution of the emission, together with the often challenging localization uncertainties of the alerts, underscores the need for rapid and well-coordinated follow-up programs such as the one developed by the H.E.S.S. Collaboration. This contribution will give an overview of the transient follow-up strategy carried out by the H.E.S.S. Collaboration, from the external alert trigger and the automatic reaction of the observatory to the various analysis steps of the obtained observations. To illustrate this comprehensive strategy, we will show two examples of follow-up observations of both GRBs and GWs, highlighting key results and challenges in the search for an associated high-energy gamma-ray emission.
title The H.E.S.S. Gravitational Wave and Gamma-Ray Burst Follow-Up Programs
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2510.02687