Dynamical ejecta of neutron star mergers with nucleonic weak processes I: Nucleosynthesis
arXiv:2109.02509 · doi:10.1093/mnras/stab3393
Abstract
We present a coherent study of the impact of neutrino interactions on the r-process element nucleosynthesis and the heating rate produced by the radioactive elements synthesised in the dynamical ejecta of neutron star-neutron star (NS-NS) mergers. We have studied the material ejected from four NS-NS merger systems based on hydrodynamical simulations which handle neutrino effects in an elaborate way by including neutrino equilibration with matter in optically thick regions and re-absorption in optically thin regions. We find that the neutron richness of the dynamical ejecta is significantly affected by the neutrinos emitted by the post-merger remnant, in particular when compared to a case neglecting all neutrino interactions. Our nucleosynthesis results show that a solar-like distribution of r- process elements with mass numbers is produced, including a significant enrichment in Sr and a reduced production of actinides compared to simulations without inclusion of the nucleonic weak processes. The composition of the dynamically ejected matter as well as the corresponding rate of radioactive decay heating are found to be rather independent of the system mass asymmetry and the adopted equation of state. This approximate degeneracy in abundance pattern and heating rates can be favourable for extracting the ejecta properties from kilonova observations, at least if the dynamical component dominates the overall ejecta. Part II of this work will study the light curve produced by the dynamical ejecta of our four NS merger models.
18 pages, 21 figures, 2 Tables, accepted by MNRAS 2021-11-19
References in corpus (29)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Multi-messenger Observations of a Binary Neutron Star Merger
- Origin of the heavy elements in binary neutron-star mergers from a gravitational wave event
- The r-process of stellar nucleosynthesis: Astrophysics and nuclear physics achievements and mysteries
- Comprehensive nucleosynthesis analysis for ejecta of compact binary mergers
- Further explorations of Skyrme-Hartree-Fock-Bogoliubov mass formulas. XII: Stiffness and stability of neutron-star matter
- Magnetorotationally driven Supernovae as the origin of early galaxy -process elements?
- Identification of strontium in the merger of two neutron stars
- The dynamical mass ejection from binary neutron star mergers: Radiation-hydrodynamics study in general relativity
- Relativistic neutron star merger simulations with non-zero temperature equations of state I. Variation of binary parameters and equation of state
- AT2017gfo: an anisotropic and three-component kilonova counterpart of GW170817
- Nucleosynthesis-relevant conditions in neutrino-driven supernova outflows. I. Spherically symmetric hydrodynamic simulations
- Muon Creation in Supernova Matter Facilitates Neutrino-driven Explosions
- Self-consistent 3D Supernova Models From -7 Minutes to +7 Seconds: a 1-bethe Explosion of a ~19 Solar-mass Progenitor
- Neutron-powered precursors of kilonovae
- On r-process nucleosynthesis from matter ejected in binary neutron starmergers
- Integrated Nucleosynthesis in Neutrino Driven Winds
- Numerical Relativity Simulations of the Neutron Star Merger GW170817: Long-Term Remnant Evolutions, Winds, Remnant Disks, and Nucleosynthesis
- Databases and tools for nuclear astrophysics applications BRUSsels Nuclear LIBrary (BRUSLIB), Nuclear Astrophysics Compilation of REactions II (NACRE II) and Nuclear NETwork GENerator (NETGEN)
- Fast neutrino flavor conversion, ejecta properties, and nucleosynthesis in newly-formed hypermassive remnants of neutron-star mergers
- Monte-Carlo neutrino transport in neutron star merger simulations
- Neutrino absorption and other physics dependencies in neutrino-cooled black-hole accretion disks
- Nucleosynthesis in magneto-rotational supernovae
- Fission fragment distributions and their impact on the r-process nucleosynthesis in neutron star mergers
- Dynamical ejecta synchrotron emission as possible contributor to the changing behaviour of GRB170817A
- Estimating outflow masses and velocities in merger simulations: impact of r-process heating and neutrino cooling
- The role of weak interactions in dynamic ejecta from binary neutron star mergers
- The chemical signature of jet-driven hypernovae
- : Radiation GRMHD for Neutrino-Driven Accretion Flows