A Unified Model of Kilonovae and GRBs in Binary Mergers Establishes Neutron Stars as the Central Engines of Short GRBs
Ore Gottlieb, Brian D. Metzger, Francois Foucart, Enrico Ramirez-Ruiz

TL;DR
This paper presents a unified theoretical model linking binary mergers, kilonovae, and gamma-ray bursts, highlighting neutron stars as central engines and explaining observed differences in kilonova brightness and color.
Contribution
It introduces a comprehensive framework connecting kilonovae and GRB types to their central engine mechanisms, emphasizing neutron star remnants over black hole engines for short GRBs.
Findings
Luminous red kilonovae accompany long GRBs from black hole accretion disks.
Bluer kilonovae are associated with short GRBs from neutron star remnants.
GW170817 may have been an lbGRB observed on-axis.
Abstract
We expand the theoretical framework by Gottlieb el al. (2023), which connects binary merger populations with long and short binary gamma-ray bursts (lbGRBs and sbGRBs), incorporating kilonovae as a key diagnostic tool. We show that lbGRBs, powered by massive accretion disks around black holes (BHs), should be accompanied by bright, red kilonovae. In contrast, sbGRBs - if also powered by BHs - would produce fainter, red kilonovae, potentially biasing against their detection. However, magnetized hypermassive neutron star (HMNS) remnants that precede BH formation can produce jets with power () and Lorentz factor (), likely compatible with sbGRB observations, and would result in distinctly bluer kilonovae, offering a pathway to identifying the sbGRB central engine. Recent modeling by Rastinejad et al. (2024) found luminous red…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Astro and Planetary Science · Astronomy and Astrophysical Research
