Actinide signatures in low electron fraction kilonova ejecta
arXiv:2409.16210 · doi:10.1093/mnras/stae2778
Abstract
Neutron star (NS) mergers are known to produce heavy elements through rapid neutron capture (r-process) nucleosynthesis. Actinides are expected to be created solely by the r-process in the most neutron rich environments. Confirming if NS mergers provide the requisite conditions for actinide creation is therefore central to determining their origin in the Universe. Actinide signatures in kilonova (KN) spectra may yield an answer, provided adequate models are available in order to interpret observational data. In this study, we investigate actinide signatures in neutron rich merger ejecta. We use three ejecta models with different compositions and radioactive power, generated by nucleosynthesis calculations using the same initial electron fraction () but with different nuclear physics inputs and thermodynamic expansion history. These are evolved from 10 - 100 days after merger using the SUMO non-local thermodynamic equilibrium (NLTE) radiative transfer code. We highlight how uncertainties in nuclear properties, as well as choices in thermodynamic trajectory, may yield entirely different outputs for equal values of . We consider an actinide-free model and two actinide-rich models, and find that the emergent spectra and lightcurve evolution are significantly different depending on the amount of actinides present, and the overall decay properties of the models. We also present potential key actinide spectral signatures, of which doubly ionized Ac and Th may be particularly interesting as spectral indicators of actinide presence in KN ejecta.
21 pages with appendices, 11 figures, published in MNRAS
References in corpus (60)
- 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 Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/VIRGO GW170817. II. UV, Optical, and Near-IR Light Curves and Comparison to Kilonova Models
- A kilonova as the electromagnetic counterpart to a gravitational-wave source
- The Emergence of a Lanthanide-Rich Kilonova Following the Merger of Two Neutron Stars
- Origin of the Heaviest Elements: the Rapid Neutron-Capture Process
- Production of all the r-process nuclides in the dynamical ejecta of neutron star mergers
- On the astrophysical robustness of neutron star merger r-process
- The Combined Ultraviolet, Optical, and Near-Infrared Light Curves of the Kilonova Associated with the Binary Neutron Star Merger GW170817: Unified Data Set, Analytic Models, and Physical Implications
- R-Process Nucleosynthesis in Dynamically Ejected Matter of Neutron Star Mergers
- Identification of strontium in the merger of two neutron stars
- A Kilonova Following a Long-Duration Gamma-Ray Burst at 350 Mpc
- Radioactivity and thermalization in the ejecta of compact object mergers and their impact on kilonova light curves
- Merger and Mass Ejection of Neutron-Star Binaries
- Systematic Opacity Calculations for Kilonovae
- JWST detection of heavy neutron capture elements in a compact object merger
- Impact of ejecta morphology and composition on the electromagnetic signatures of neutron star mergers
- The progenitor mass of the Type IIP supernova SN 2004et from late-time spectral modeling
- Production of the entire range of r-process nuclides by black hole accretion disc outflows from neutron star mergers
- On the nuclear robustness of the r process in neutron-star mergers
- Properties of Kilonovae from Dynamical and Post-Merger Ejecta of Neutron Star Mergers
- The 44Ti-powered spectrum of SN 1987A
- Detectability of compact binary merger macronovae
- Numerical Relativity Simulations of the Neutron Star Merger GW170817: Long-Term Remnant Evolutions, Winds, Remnant Disks, and Nucleosynthesis
- Impact of weak interactions of free nucleons on the r-process in dynamical ejecta from neutron-star mergers
- Fingerprints of heavy element nucleosynthesis in the late-time lightcurves of kilonovae
- Spitzer Mid-Infrared Detections of Neutron Star Merger GW170817 Suggests Synthesis of the Heaviest Elements
- Kilonovae across the nuclear physics landscape: The impact of nuclear physics uncertainties on r-process-powered emission
- Post-merger Mass Ejection of Low-mass Binary Neutron Stars
- Modeling Kilonova Light Curves: Dependence on Nuclear Inputs
- Californium-254 and kilonova light curves
- Radioactive heating rate of r-process elements and macronova light curve
- Modelling the spectra of the kilonova AT2017gfo -- I: The photospheric epochs
- Comprehensive study of mass ejection and nucleosynthesis in binary neutron star mergers leaving short-lived massive neutron stars
- Signatures of r-process elements in kilonova spectra
- Simulations of early kilonova emission from neutron star mergers
- Radioactive Heating and Late Time Kilonova Light Curves
- The critical role of nuclear heating rates, thermalization efficiencies and opacities for kilonova modelling and parameter inference
- Physical conditions for the r-process I. radioactive energy sources of kilonovae
- A low-mass binary neutron star: long-term ejecta evolution and kilonovae with weak blue emission
- NLTE Effects on Kilonova Expansion Opacities
- Constraints on the presence of platinum and gold in the spectra of the kilonova AT2017gfo
- Nebular Emission from Lanthanide-rich Ejecta of Neutron Star Merger
- On the Validity of Steady-State for Nebular Phase Kilonovae
- Composition Effects on Kilonova Spectra and Light Curves: I
- Fission fragment distributions and their impact on the r-process nucleosynthesis in neutron star mergers
- Fission and the r-process nucleosynthesis of translead nuclei in neutron star mergers
- Discovery of a 760 nm P Cygni line in AT2017gfo: Identification of yttrium in the kilonova photosphere
- Actinide opacities for modeling the spectra and light curves of kilonovae
- NLTE Spectra of Kilonovae
- Late time kilonova light curves and implications to GW 170817
- The origin of polarization in kilonovae and the case of the gravitational-wave counterpart AT 2017gfo
- Tungsten vs Selenium as a potential source of kilonova nebular emission observed by Spitzer
- Opacities of Singly and Doubly Ionised Neodymium and Uranium for Kilonova Emission Modeling
- Neutron-Capture elements in planetary nebulae: first detections of near-Infrared [Te III] and [Br V] emission lines
- Impact of systematic nuclear uncertainties on composition and decay heat of dynamical and disk ejecta in compact binary mergers
- Superheavy Elements in Kilonovae
- Non-LTE analysis for Helium and Strontium lines in the kilonova AT2017gfo
- Cautionary tales on heating-rate prescriptions in kilonovae
- New Radiative and Collisional Atomic Data for Sr {\sc ii} and Y {\sc ii} with application to Kilonova modelling
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