AT2025ulz and S250818k: Investigating early time observations of a subsolar mass gravitational-wave binary neutron star merger candidate

Fuente: arXiv
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Auteurs principaux: Hall, Xander J., Busmann, Malte, Koehn, Hauke, Kunnumkai, Keerthi, Palmese, Antonella, O'Connor, Brendan, Freeburn, James, Hu, Lei, Gruen, Daniel, Dietrich, Tim, Bulla, Mattia, Coughlin, Michael W., Antier, Sarah, Pillas, Marion, Price, Paul A., Ahumada, Tomás, Amsellem, Ariel, Andreoni, Igor, Augustin, Jule, Cabrera, Tom'as, Deshpande, Rasika, Fabà-Moreno, Jennifer, Gassert, Julius, Karpov, Sergey, Kasliwal, Mansi, Hernandez, Ignacio Magaña, Mandelbaum, Rachel, Nunes, Felipe Fontinele, Pang, Peter T. H., Sommer, Julian, Stein, Robert, Tabor, Constantin, Vega, Pablo, Wouters, Thibeau, Zuo, Xiaoxiong
Format: Preprint
Publié: 2025
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author Hall, Xander J.
Busmann, Malte
Koehn, Hauke
Kunnumkai, Keerthi
Palmese, Antonella
O'Connor, Brendan
Freeburn, James
Hu, Lei
Gruen, Daniel
Dietrich, Tim
Bulla, Mattia
Coughlin, Michael W.
Antier, Sarah
Pillas, Marion
Price, Paul A.
Ahumada, Tomás
Amsellem, Ariel
Andreoni, Igor
Augustin, Jule
Cabrera, Tom'as
Deshpande, Rasika
Fabà-Moreno, Jennifer
Gassert, Julius
Karpov, Sergey
Kasliwal, Mansi
Hernandez, Ignacio Magaña
Mandelbaum, Rachel
Nunes, Felipe Fontinele
Pang, Peter T. H.
Sommer, Julian
Stein, Robert
Tabor, Constantin
Vega, Pablo
Wouters, Thibeau
Zuo, Xiaoxiong
author_facet Hall, Xander J.
Busmann, Malte
Koehn, Hauke
Kunnumkai, Keerthi
Palmese, Antonella
O'Connor, Brendan
Freeburn, James
Hu, Lei
Gruen, Daniel
Dietrich, Tim
Bulla, Mattia
Coughlin, Michael W.
Antier, Sarah
Pillas, Marion
Price, Paul A.
Ahumada, Tomás
Amsellem, Ariel
Andreoni, Igor
Augustin, Jule
Cabrera, Tom'as
Deshpande, Rasika
Fabà-Moreno, Jennifer
Gassert, Julius
Karpov, Sergey
Kasliwal, Mansi
Hernandez, Ignacio Magaña
Mandelbaum, Rachel
Nunes, Felipe Fontinele
Pang, Peter T. H.
Sommer, Julian
Stein, Robert
Tabor, Constantin
Vega, Pablo
Wouters, Thibeau
Zuo, Xiaoxiong
contents Over the past LIGO--Virgo--KAGRA (LVK) observing runs, it has become increasingly clear that identifying the next electromagnetic counterparts to gravitational-wave (GW) neutron star mergers will likely be more challenging compared to the case of GW170817. The rarity of these GW events, and their electromagnetic counterparts, motivates rapid searches of any candidate binary neutron star (BNS) merger detected by the LVK. We present our extensive photometric and spectroscopic campaign of the candidate counterpart AT2025ulz to the low-significance GW event S250818k, which had a ${\sim} 29\%$ probability of being a BNS merger. We demonstrate that during the first five days, the luminosity and color evolution of AT2025ulz are consistent with both kilonova and shock cooling models, although a Bayesian model comparison shows preference for the shock cooling model, underscoring the ambiguity inherent to early data obtained over only a few days. Continued monitoring beyond this window reveals a rise and color evolution incompatible with kilonova models and instead consistent with a supernova. This event emphasizes the difficulty in identifying the electromagnetic counterparts to BNS mergers and the significant allotment of observing time necessary to robustly differentiate kilonovae from impostors.
format Preprint
id arxiv_https___arxiv_org_abs_2510_24620
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle AT2025ulz and S250818k: Investigating early time observations of a subsolar mass gravitational-wave binary neutron star merger candidate
Hall, Xander J.
Busmann, Malte
Koehn, Hauke
Kunnumkai, Keerthi
Palmese, Antonella
O'Connor, Brendan
Freeburn, James
Hu, Lei
Gruen, Daniel
Dietrich, Tim
Bulla, Mattia
Coughlin, Michael W.
Antier, Sarah
Pillas, Marion
Price, Paul A.
Ahumada, Tomás
Amsellem, Ariel
Andreoni, Igor
Augustin, Jule
Cabrera, Tom'as
Deshpande, Rasika
Fabà-Moreno, Jennifer
Gassert, Julius
Karpov, Sergey
Kasliwal, Mansi
Hernandez, Ignacio Magaña
Mandelbaum, Rachel
Nunes, Felipe Fontinele
Pang, Peter T. H.
Sommer, Julian
Stein, Robert
Tabor, Constantin
Vega, Pablo
Wouters, Thibeau
Zuo, Xiaoxiong
High Energy Astrophysical Phenomena
Over the past LIGO--Virgo--KAGRA (LVK) observing runs, it has become increasingly clear that identifying the next electromagnetic counterparts to gravitational-wave (GW) neutron star mergers will likely be more challenging compared to the case of GW170817. The rarity of these GW events, and their electromagnetic counterparts, motivates rapid searches of any candidate binary neutron star (BNS) merger detected by the LVK. We present our extensive photometric and spectroscopic campaign of the candidate counterpart AT2025ulz to the low-significance GW event S250818k, which had a ${\sim} 29\%$ probability of being a BNS merger. We demonstrate that during the first five days, the luminosity and color evolution of AT2025ulz are consistent with both kilonova and shock cooling models, although a Bayesian model comparison shows preference for the shock cooling model, underscoring the ambiguity inherent to early data obtained over only a few days. Continued monitoring beyond this window reveals a rise and color evolution incompatible with kilonova models and instead consistent with a supernova. This event emphasizes the difficulty in identifying the electromagnetic counterparts to BNS mergers and the significant allotment of observing time necessary to robustly differentiate kilonovae from impostors.
title AT2025ulz and S250818k: Investigating early time observations of a subsolar mass gravitational-wave binary neutron star merger candidate
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2510.24620