Identifying Kilonovae in the Presence of Optical Afterglow for the Wide Field Survey Telescope
astro-ph.HE, astro-ph.IM
Submitted: 2026-07-22
Updated: 2026-09-18
Comments: 23 pages, 13 figures,
License: http://creativecommons.org/licenses/by/4.0/
The gist: Identifying kilonovae associated with binary neutron star mergers is often complicated by the presence of a dominant synchrotron afterglow.
Terminology
Abstract
Identifying kilonovae associated with binary neutron star mergers is often complicated by the presence of a dominant synchrotron afterglow. In this work, we evaluate the performance of the Wide-Field Survey Telescope (WFST) in identifying kilonova signals in composite afterglow-kilonova transients. Using a numerical framework based on the Fisher information matrix, we simulate 10,000 realizations for each of two scenarios: an AT2017gfo-based template model and a physically sampled population that accounts for kilonova diversity. Our results indicate that kilonova identification is primarily limited by source distance. In both scenarios, the identification efficiency is largely insensitive to variations in afterglow microphysical parameters and exceeds 80% at distances within approximately 600 Mpc for AT2017gfo-like events. Under our adopted assumptions, we estimate that WFST could identify approximately 1 -- 16 kilonovae per year. Furthermore, we find that the discriminating power of color-based filters rapidly saturates, reaching a stable plateau by the second night after the merger. We therefore propose a staged observing strategy that prioritizes high-cadence g and r-band monitoring during the first night and incorporates the z band from the second night onward. This strategy improves the identification precision by exploiting the increasingly prominent red excess produced by the kilonova. Our results provide a physical basis for optimizing WFST observing resources to efficiently detect and characterize kilonovae in the multimessenger era.
Sources
- Mining the Alerts: A Preliminary Catalog of Compact Binaries from the Fourth Observing Run
- Report of the Dark Energy Task Force
- Prompt merger collapse and the maximum mass of neutron stars
- Photometric Redshifts based on standard SED fitting procedures
- Searching for Neutron Star Mergers in the Absence of Gravitational Waves with Optical Afterglow Emission
- Modeling Supernova-like Explosions Associated with Gamma-ray Bursts with Short Durations
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