Line Expansion Opacity in Relativistically Expanding Media
arXiv:1910.13619 · doi:10.3847/1538-4357/ab5306
Abstract
Spectral lines of heavy atomic elements in the ejecta of supernovae and neutron star mergers can have important contribution to the opacity of the ejecta matter even when the abundance of the elements is very small. Under favorable conditions, the line expansion opacity arising from spectral lines and the expansion of the medium can be orders of magnitude larger than the opacity of electron scattering. In this paper we derive the formulae for evaluating the line expansion opacity and its Rosseland mean in an expanding medium in the framework of special relativity, which can be considered as a generalization of the previous work in the Newtonian approximation. Then we compare the derived relativistic formulae to the Newtonian ones to explore the relativistic effect on the opacity, and test the new formulae with the spectral lines of some heavy atomic elements. We also derive some approximation formulae for the Rosseland mean of the line expansion opacity that are easy to use in numerical works while still maintaining a high enough accuracy relative to exact solutions. The formulae derived in this paper are expected to have important applications in radiative problems related to relativistic astrophysical phenomena such as neutron star mergers, supernovae, and gamma-ray bursts where relativistic or subrelativistic expansions are involved.
37 pages, including 15 figures. Accepted for publication in the Astrophysical Journal
References in corpus (16)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Multi-messenger Observations of a Binary Neutron Star Merger
- An Ordinary Short Gamma-Ray Burst with Extraordinary Implications: Fermi-GBM Detection of GRB 170817A
- Swope Supernova Survey 2017a (SSS17a), the Optical Counterpart to a Gravitational Wave Source
- Spectroscopic identification of r-process nucleosynthesis in a double neutron star merger
- INTEGRAL Detection of the First Prompt Gamma-Ray Signal Coincident with the Gravitational Wave Event GW170817
- Gamma-Ray Bursts: Progress, Problems & Prospects
- Swift and NuSTAR observations of GW170817: detection of a blue kilonova
- An optical supernova associated with the X-ray flash XRF 060218
- The discovery of the electromagnetic counterpart of GW170817: kilonova AT 2017gfo/DLT17ck
- Time Dependent Monte Carlo Radiative Transfer Calculations For 3-Dimensional Supernova Spectra, Lightcurves, and Polarization
- Secondary Maximum in the Near-Infrared Lightcurves of Type Ia Supernovae
- The Rapid Reddening and Featureless Optical Spectra of the optical counterpart of GW170817, AT 2017gfo, During the First Four Days
- Extended calculations of energy levels and transition rates of Nd II-IV ions for application to neutron star mergers
- The Unprecedented Properties of the First Electromagnetic Counterpart to a Gravitational Wave Source
- Gamma-Ray Burst Precursors as the Remnant of the Thermal Radiation Initially Trapped in the Fireball
Cited by in corpus (4)
- Probing early universe through redshifted 21-cm signal: Modelling and observational challenges
- The Tracking Tapered Gridded Estimator for the 21-cm power spectrum from MWA drift scan observations I: Validation and preliminary results
- The FHD Polarized Imaging Pipeline: A New Approach to Widefield Interferometric Polarimetry
- The MWA Long Baseline Epoch of Reionisation Survey: I. Improved Source Catalogue for the EoR 0 field