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Kilonova Constraints for the LIGO/Virgo/KAGRA Neutron Star Merger Candidate S250206dm: GW-MMADS Observations

  • Lei Hu
  • , Tomás Cabrera
  • , Antonella Palmese
  • , James Freeburn
  • , Mattia Bulla
  • , Igor Andreoni
  • , Xander J. Hall
  • , Brendan O’Connor
  • , Ariel Amsellem
  • , Clécio R. Bom
  • , Malte Busmann
  • , Jennifer Fabà
  • , Julius Gassert
  • , Sena Kalabalik
  • , Keerthi Kunnumkai
  • , Daniel Gruen
  • , Luidhy Santana-Silva
  • , André Santos
  • , Tomás Ahumada
  • , Jonathan Carney
  • Michael W. Coughlin, Xingzhuo Chen, K. E.Saavik Ford, Daniel E. Holz, Mansi M. Kasliwal, Ignacio Magaña Hernandez, Cassidy Mihalenko, Rosalba Perna, Arno Riffeser, Christoph Ries, Lena Schnappinger, Michael Schmidt, Julian Sommer, Sarah Teague, Pablo Vega, Olga Volchansky, Lifan Wang, Yajie Zhang
  • Carnegie Mellon University
  • Swinburne University of Technology
  • ARC Centre of Excellence for Gravitational Wave Discovery
  • University of Ferrara
  • National Institute for Nuclear Physics
  • National Institute for Astrophysics
  • University of North Carolina at Chapel Hill
  • Centro Brasileiro de Pesquisas Físicas
  • Ludwig Maximilian University of Munich
  • Excellence Cluster Universe
  • California Institute of Technology
  • University of Minnesota Twin Cities
  • Texas A&M University
  • Simons Foundation
  • American Museum of Natural History
  • City University of New York
  • The University of Chicago
  • University of Tasmania
  • Max Planck Institute for Extraterrestrial Physics

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Gravitational-wave (GW) neutron star mergers with an associated electromagnetic counterpart constitute powerful probes of binary evolution, the production sites of heavy elements, general relativity, and the expansion of the Universe. Only a handful of candidate GW binary mergers during the fourth LIGO/Virgo/KAGRA observing run (O4) so far are believed to include a neutron star. We present optical-near-infrared follow-up observations of the candidate neutron star-black hole GW merger S250206dm. This is the first high-significance mass-gap neutron star-black hole candidate observed by multiple GW detectors (thus having a significantly smaller sky localization than one-detector events), offering the first opportunity to effectively follow up a GW event of this kind. Our GW MultiMessenger Astronomy DECam Survey (GW-MMADS) campaign consisted of a wide-field search using the Dark Energy Camera (DECam) and T80-South (T80S), as well as galaxy-targeted observations using the Southern Astrophysical Research (SOAR) imager and the Fraunhofer Telescope at Wendelstein Observatory. No viable kilonova counterpart was found in our observations. We use our observation depths to place competitive constraints on kilonova models similar to or brighter than the GW170817 kilonova AT 2017gfo within our observed fields, ruling out 100% of such models with SOAR galaxy-targeted observations and ∼43% (48%) with DECam (DECam and T80S).

Original languageEnglish
Article numberL46
JournalAstrophysical Journal Letters
Volume990
Issue number2
DOIs
StatePublished - Sep 10 2025

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