A Joint Search for the Electromagnetic Counterpart to the Gravitational-Wave Binary Black-Hole Merger Candidate S250328ae with the Dark Energy Camera and the Prime Focus Spectrograph

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Main Authors: Zhang, Haibin, Kokubo, Mitsuru, MacBride, Sean, McMahon, Isaac, Tominaga, Nozomu, Utsumi, Yousuke, Yoshida, Michitoshi, Morokuma, Tomoki, Tanaka, Masaomi, Arai, Akira, He, Wanqiu, Moritani, Yuki, Onodera, Masato, Passegger, Vera Maria, Tanaka, Ichi, Yabe, Kiyoto, Joseph, Lillian, Kaur, Simran, Bommireddy, Hemanth, Sherman, Nora, Herner, Kenneth, Diehl, H. Thomas, Soares-Santos, Marcelle
Format: Preprint
Published: 2025
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author Zhang, Haibin
Kokubo, Mitsuru
MacBride, Sean
McMahon, Isaac
Tominaga, Nozomu
Utsumi, Yousuke
Yoshida, Michitoshi
Morokuma, Tomoki
Tanaka, Masaomi
Arai, Akira
He, Wanqiu
Moritani, Yuki
Onodera, Masato
Passegger, Vera Maria
Tanaka, Ichi
Yabe, Kiyoto
Joseph, Lillian
Kaur, Simran
Bommireddy, Hemanth
Sherman, Nora
Herner, Kenneth
Diehl, H. Thomas
Soares-Santos, Marcelle
author_facet Zhang, Haibin
Kokubo, Mitsuru
MacBride, Sean
McMahon, Isaac
Tominaga, Nozomu
Utsumi, Yousuke
Yoshida, Michitoshi
Morokuma, Tomoki
Tanaka, Masaomi
Arai, Akira
He, Wanqiu
Moritani, Yuki
Onodera, Masato
Passegger, Vera Maria
Tanaka, Ichi
Yabe, Kiyoto
Joseph, Lillian
Kaur, Simran
Bommireddy, Hemanth
Sherman, Nora
Herner, Kenneth
Diehl, H. Thomas
Soares-Santos, Marcelle
contents The first detection of an optical counterpart to a gravitational wave signal revealed that collaborative efforts between instruments with different specializations provide a unique opportunity to acquire impactful multi-messenger data. We present results of such a joint search with the Dark Energy Camera (DECam) and Prime Focus Spectrograph (PFS) for the optical counterpart of the LIGO-Virgo-KAGRA event S250328ae, a binary black hole merger candidate of high significance detected at a distance of 511$\pm$82 Mpc and localized within an area of 3 (15) square degrees at 50% (90%) confidence. We observed the 90% confidence area with DECam and identified 36 high-confidence transient candidates after image processing, candidate selection, and candidate vetting. We observed with PFS to obtain optical spectra of DECam candidates, Swift-XRT candidates, and potential host galaxies of S250328ae. In total, 3897 targets were observed by seven pointings covering ~50% of the 90% confidence area. After template fitting and visual inspection, we identified 12 SNe, 159 QSOs, 2975 galaxies, and 131 stars. With the joint observations of DECam and PFS, we found variability in 12 SNe, 139 QSOs, 37 galaxies, and 2 stars. We do not identify any confident optical counterparts, though the association is not ruled out for three variable candidates that are not observed by PFS and 6 QSO candidates without clear variability if the optical counterpart of S250328ae is faint. Despite the lack of confident optical counterparts, this paper serves as a framework for future collaborations between wide-field imagers and multi-object spectrographs to maximize multi-messenger analyses.
format Preprint
id arxiv_https___arxiv_org_abs_2508_00291
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Joint Search for the Electromagnetic Counterpart to the Gravitational-Wave Binary Black-Hole Merger Candidate S250328ae with the Dark Energy Camera and the Prime Focus Spectrograph
Zhang, Haibin
Kokubo, Mitsuru
MacBride, Sean
McMahon, Isaac
Tominaga, Nozomu
Utsumi, Yousuke
Yoshida, Michitoshi
Morokuma, Tomoki
Tanaka, Masaomi
Arai, Akira
He, Wanqiu
Moritani, Yuki
Onodera, Masato
Passegger, Vera Maria
Tanaka, Ichi
Yabe, Kiyoto
Joseph, Lillian
Kaur, Simran
Bommireddy, Hemanth
Sherman, Nora
Herner, Kenneth
Diehl, H. Thomas
Soares-Santos, Marcelle
High Energy Astrophysical Phenomena
The first detection of an optical counterpart to a gravitational wave signal revealed that collaborative efforts between instruments with different specializations provide a unique opportunity to acquire impactful multi-messenger data. We present results of such a joint search with the Dark Energy Camera (DECam) and Prime Focus Spectrograph (PFS) for the optical counterpart of the LIGO-Virgo-KAGRA event S250328ae, a binary black hole merger candidate of high significance detected at a distance of 511$\pm$82 Mpc and localized within an area of 3 (15) square degrees at 50% (90%) confidence. We observed the 90% confidence area with DECam and identified 36 high-confidence transient candidates after image processing, candidate selection, and candidate vetting. We observed with PFS to obtain optical spectra of DECam candidates, Swift-XRT candidates, and potential host galaxies of S250328ae. In total, 3897 targets were observed by seven pointings covering ~50% of the 90% confidence area. After template fitting and visual inspection, we identified 12 SNe, 159 QSOs, 2975 galaxies, and 131 stars. With the joint observations of DECam and PFS, we found variability in 12 SNe, 139 QSOs, 37 galaxies, and 2 stars. We do not identify any confident optical counterparts, though the association is not ruled out for three variable candidates that are not observed by PFS and 6 QSO candidates without clear variability if the optical counterpart of S250328ae is faint. Despite the lack of confident optical counterparts, this paper serves as a framework for future collaborations between wide-field imagers and multi-object spectrographs to maximize multi-messenger analyses.
title A Joint Search for the Electromagnetic Counterpart to the Gravitational-Wave Binary Black-Hole Merger Candidate S250328ae with the Dark Energy Camera and the Prime Focus Spectrograph
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2508.00291