Self-consistent 3D radiative transfer for kilonovae: directional spectra from merger simulations
Luke J. Shingles, Christine E. Collins, Vimal Vijayan, Andreas Fl\"ors, Oliver Just, Gerrit Leck, Zewei Xiong, Andreas Bauswein, Gabriel Mart\'inez-Pinedo, Stuart A. Sim

TL;DR
This paper presents advanced 3D radiative transfer simulations of neutron star merger ejecta, revealing spectral features and viewing angle effects that improve understanding of kilonova observations.
Contribution
It introduces a line-by-line radiative transfer method including fluorescence effects and detailed atomic data calibration, advancing kilonova spectral modeling.
Findings
Spectral features vary with viewing angle and evolve over time.
Calibrated atomic data improves agreement with observed spectra.
3D models differ significantly from spherically averaged 1D models.
Abstract
We present three-dimensional radiative transfer calculations for the ejecta from a neutron star merger that include line-by-line opacities for tens of millions of bound-bound transitions, composition from an r-process nuclear network, and time-dependent thermalization of decay products from individual and decay reactions. In contrast to expansion opacities and other wavelength-binned treatments, a line-by-line treatment enables us include fluorescence effects and associate spectral features with the emitting and absorbing lines of individual elements. We find variations in the synthetic observables with both the polar and azimuthal viewing angles. The spectra exhibit blended features with strong interactions by Ce III, Sr II, Y II, and Zr II that vary with time and viewing direction. We demonstrate the importance of wavelength-calibration of atomic data using a model…
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Taxonomy
TopicsGamma-ray bursts and supernovae · Astronomy and Astrophysical Research
