Impact of nuclear matter properties on the nucleosynthesis and the kilonova from binary neutron star merger ejecta
arXiv:2406.03649 · doi:10.1093/mnras/stae1979
Abstract
Material expelled from binary neutron star (BNS) mergers can harbor r-process nucleosynthesis and power a Kilonova (KN), both intimately related to the astrophysical conditions of the ejection. In turn such conditions indirectly depend on the equation of state (EOS) describing matter inside the neutron star. Therefore, in principle the above observables can hold valuable information on nuclear matter, as the merger gravitational wave signal already does. In this work, we consider the outcome of a set of BNS merger simulations employing different finite-temperature nuclear EOSs. The latter are obtained from a Skyrme-type interaction model where nuclear properties, such as the incompressibility and the nucleon effective mass at saturation density, are systematically varied. We post-process the ejecta using a reaction network coupled with a semi-analytic KN model, to asses the sensitivity on the input EOS of the final yields and the KN light curves. Both of them are found to be non-trivially influenced by the EOS, with the overall outcome being dominated by the heterogeneous outflows from the remnant disk, hosting a variable degree of neutron-rich material. The dynamical ejecta can be more directly related to the EOS parameters considered, however, we find its role in the yields production and the KN emission too entangled with the other ejecta components, in order to infer solid correlations. This result highlights the strong degeneracy that intervenes between the merger outcome and the behaviour of the intrinsic nuclear matter, and places itself as a limit to the employment of EOS-constraining approaches of such kind.
References in corpus (62)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Multi-messenger Observations of a Binary Neutron Star Merger
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- A gravitational-wave standard siren measurement of the Hubble constant
- Origin of the heavy elements in binary neutron-star mergers from a gravitational wave event
- A NICER View of the Massive Pulsar PSR J0740+6620 Informed by Radio Timing and XMM-Newton Spectroscopy
- A kilonova as the electromagnetic counterpart to a gravitational-wave source
- Constraining the Maximum Mass of Neutron Stars From Multi-Messenger Observations of GW170817
- Comprehensive nucleosynthesis analysis for ejecta of compact binary mergers
- Improved nuclear matter calculations from chiral low-momentum interactions
- Magnetorotationally driven Supernovae as the origin of early galaxy -process elements?
- GW170817: Joint Constraint on the Neutron Star Equation of State from Multimessenger Observations
- Neutron-star radius constraints from GW170817 and future detections
- Identification of strontium in the merger of two neutron stars
- Neutrino-driven winds from neutron star merger remnants
- Modeling GW170817 based on numerical relativity and its implications
- Kilonovae
- Neutron Star Mergers and Nucleosynthesis of Heavy Elements
- Kilonova Light Curves from the Disk Wind Outflows of Compact Object Mergers
- AT2017gfo: an anisotropic and three-component kilonova counterpart of GW170817
- Testing Approximations of Thermal Effects in Neutron Star Merger Simulations
- Production of Light Element Primary Process nuclei in neutrino-driven winds
- THC: a new high-order finite-difference high-resolution shock-capturing code for special-relativistic hydrodynamics
- Nucleosynthesis in the Early Galaxy
- On r-process nucleosynthesis from matter ejected in binary neutron starmergers
- SkyNet: A modular nuclear reaction network library
- Numerical Relativity Simulations of the Neutron Star Merger GW170817: Long-Term Remnant Evolutions, Winds, Remnant Disks, and Nucleosynthesis
- Chemical evolution with rotating massive star yields II. A new assessment of the solar s- and r- process components
- Revisiting the lower bound on tidal deformability derived by AT 2017gfo
- A New Open-Source Nuclear Equation of State Framework based on the Liquid-Drop Model with Skyrme Interaction
- The Radius of PSR J0740+6620 from NICER with NICER Background Estimates
- Post-merger Mass Ejection of Low-mass Binary Neutron Stars
- Abundances of Sr, Y, and Zr in Metal-Poor Stars and Implications for Chemical Evolution in the Early Galaxy
- How many nucleosynthesis processes exist at low metallicity?
- Comprehensive study of mass ejection and nucleosynthesis in binary neutron star mergers leaving short-lived massive neutron stars
- Neutrino absorption and other physics dependencies in neutrino-cooled black-hole accretion disks
- Production of very light elements and strontium in the early ejecta of neutron star mergers
- Simulations of early kilonova emission from neutron star mergers
- Light-curve models of black hole - neutron star mergers: steps towards a multi-messenger parameter estimation
- The critical role of nuclear heating rates, thermalization efficiencies and opacities for kilonova modelling and parameter inference
- Self-consistent picture of the mass ejection from a one second-long binary neutron star merger leaving a short-lived remnant in general-relativistic neutrino-radiation magnetohydrodynamic simulation
- Finite-temperature extension for cold neutron star equations of state
- GRMHD simulations of neutron-star mergers with weak interactions: r-process nucleosynthesis and electromagnetic signatures of dynamical ejecta
- Mapping dynamical ejecta and disk masses from numerical relativity simulations of neutron star mergers
- Probing the incompressibility of nuclear matter at ultra-high density through the prompt collapse of asymmetric neutron star binaries
- Thermal Effects in Binary Neutron Star Mergers
- Radius Constraints from Reflection Modeling of Cygnus X-2 with NuSTAR and NICER
- Impact of the nuclear symmetry energy on the post-merger phase of a binary neutron star coalescence
- Self-consistent 3D radiative transfer for kilonovae: directional spectra from merger simulations
- 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
- Numerical relativity simulations of the neutron star merger GW190425: microphysics and mass ratio effects
- Radiation hydrodynamics modeling of kilonovae with SNEC
- Long-term 3D-MHD Simulations of Black Hole Accretion Disks formed in Neutron Star Mergers
- Thermal behavior as indicator for hyperons in binary neutron star merger remnants
- MODA: a new algorithm to compute optical depths in multi-dimensional hydrodynamic simulations
- Nucleosynthesis in Outflows from Black Hole-Neutron Star Merger Disks With Full GRRMHD
- Tracer particles for core-collapse supernova nucleosynthesis: The advantages of moving backward
- Effects of nuclear matter properties in neutron star mergers
- XKN: a Semi-analytic Framework for the Modelling of Kilonovae
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- Long-lived neutron-star remnants from asymmetric binary neutron star mergers: element formation, kilonova signals and gravitational waves
- Impact of Neutrino Flavor Conversions on Neutron Star Merger Dynamics, Ejecta, Nucleosynthesis, and Multi-Messenger Signals
- Ab initio calculations of monopole sum rules: From finite nuclei to infinite nuclear matter
- Exploring Composition Mixing in Kilonova Ejecta with Ray-by-ray Simulations
- Neutron star evolution by combining discontinuous Galerkin and finite volume methods
- Universality and variability of the heavy r-process element abundance pattern from a nonequilibrium approach