The Role of Core-collapse Physics in the Observability of Black Hole Neutron Star Mergers as Multimessenger Sources
Published inThe astrophysical journal. Letters, vol. 912, no. 2, L23
Publication date2021
First online date2021-05-06
Abstract
Keywords
- Binary: coalescence
- Star: massive
- Black hole: formation
- Black hole: mass
- Neutron star: binary
- Black hole: binary
- Supernova
- Equation of state
- Neutron star
- Gravitation: collapse
- Electromagnetic field: production
- Gravitational radiation
- Gravitational radiation: emission
- Numerical calculations
- Star: compact
- Gravitational radiation: direct detection
Affiliation entities
Funding
- Swiss National Science Foundation - Compact-Object-Formation Forensics in the Era of Gravitational Waves [176868]
- Swiss National Science Foundation - The Supernova Kicks with GAIA DR2 in Galactic X-Ray Binaries [188242]
- European Commission - Accreting binary populations in Nearby Galaxies: Observations and Simulations [617001]
Citation (ISO format)
ROMAN GARZA, Jaime et al. The Role of Core-collapse Physics in the Observability of Black Hole Neutron Star Mergers as Multimessenger Sources. In: The astrophysical journal. Letters, 2021, vol. 912, n° 2, p. L23. doi: 10.3847/2041-8213/abf42c
Main files (1)
Article (Published version)
Identifiers
- PID : unige:193129
- DOI : 10.3847/2041-8213/abf42c
- arXiv : 2012.02274
Additional URL for this publicationhttps://iopscience.iop.org/article/10.3847/2041-8213/abf42c
Journal ISSN2041-8205
