Neutron star collisions

GPTKB entity

Properties (65)
Predicate Object
gptkbp:instanceOf Astrophysical event
gptkbp:area Galaxy evolution
Electromagnetic radiation
Astrophysical simulations
Short-duration gamma-ray bursts
gptkbp:canBe Heavy element formation
gptkbp:canCreate Gravitational wave signals
Neutron-rich matter
R-process elements
Exotic_states_of_matter
gptkbp:canEstablish Neutrinos
gptkbp:canLeadTo Astrophysical phenomena
Electromagnetic counterparts
Observational campaigns
Astrophysical discoveries
New astronomical phenomena
New physics discoveries
https://www.w3.org/2000/01/rdf-schema#label Neutron star collisions
gptkbp:includes Extreme densities
gptkbp:isCelebratedFor Astronomical events
gptkbp:isCounteredBy Gravitational wave events
gptkbp:isCriticizedFor Understanding the universe
Understanding stellar remnants
gptkbp:isImportantFor Cosmology
Astrophysical modeling
Understanding nucleosynthesis
gptkbp:isInfluencedBy Neutron_star_properties
gptkbp:isLinkedTo Supernovae
Cosmic rays
gptkbp:isMonitoredBy Space telescopes
gptkbp:isPartOf Astrophysical research
Stellar evolution
Cosmic events
gptkbp:isPromotedThrough Telescopic imaging
gptkbp:isProtectedBy gptkb:LIGO
gptkbp:isRelatedTo Astrophysical jets
Neutron_star_physics
gptkbp:isStudiedIn Astrophysics
Astronomers
Numerical simulations
Gravitational wave astronomy
Gravitational wave research
Nuclear physics insights
gptkbp:isUsedFor gptkb:Neutron_star_mergers
General relativity
Electromagnetic spectrum
Energy release
Black hole formation
Matter-antimatter asymmetry
Gravitational wave observatories
Mass ejection
Astrophysical jets formation
Quantum_mechanics
Neutron_star_remnants
gptkbp:keyIssues Understanding dark matter
Understanding black holes
gptkbp:leads gptkb:Kilonovae
gptkbp:mayHave X-rays
Magnetic fields
High-energy particles
Heavy elements like gold
gptkbp:occursIn Binary neutron star systems
Relativistic speeds
gptkbp:produces Gamma-ray bursts
gptkbp:resultedIn Gravitational waves