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AT2025ulz and S250818k: Deep X-Ray and Radio Limits on Off-axis Afterglow Emission and Prospects for Future Discovery

  • Brendan O’Connor
  • , Roberto Ricci
  • , Eleonora Troja
  • , Antonella Palmese
  • , Yu Han Yang
  • , Geoffrey Ryan
  • , Hendrik Van Eerten
  • , Muskan Yadav
  • , Xander J. Hall
  • , Ariel Amsellem
  • , R. L. Becerra
  • , Malte Busmann
  • , Tomás Cabrera
  • , Simone Dichiara
  • , Lei Hu
  • , Ravjit Kaur
  • , Keerthi Kunnumkai
  • , Ignacio Magaña Hernandez

Research output: Contribution to journalArticlepeer-review

Abstract

The first joint electromagentic (EM) and gravitational-wave (GW) detection, known as GW170817, marked a critical juncture in our collective understanding of compact object mergers. However, it has now been 8 yr since this discovery, and the search for a second EM-GW detection has yielded no robust discoveries. Recently, on 2025 August 18, the LIGO–Virgo–KAGRA Collaboration reported a low-significance (high-false-alarm rate) binary neutron star merger candidate S250818k. Rapid optical follow-up revealed a single optical candidate AT2025ulz (z = 0.08484) that initially appeared consistent with kilonova emission. We quickly initiated a set of observations with Swift, XMM-Newton, Chandra, and the Very Large Array to search for nonthermal afterglow emission. Our deep X-ray and radio search rules out that the optical rebrightening of AT2025ulz is related to the afterglow onset, reinforcing its classification as a stripped-envelope supernova (SN 2025ulz). We derive constraints on the afterglow parameters for a hypothetical binary neutron star merger at the distance of AT2025ulz (≈400 Mpc) based on our X-ray and radio limits. We conclude that our observational campaign could exclude a GW170817-like afterglow out to viewing angles of θ v ≈ 12. °5. We briefly discuss the prospects for the future discovery of off-axis afterglows.

Original languageEnglish (US)
Article numberL47
JournalAstrophysical Journal Letters
Volume995
Issue number2
DOIs
StatePublished - Dec 20 2025

All Science Journal Classification (ASJC) codes

  • Astronomy and Astrophysics
  • Space and Planetary Science

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