arXiv · 2403.07047
Non-thermal emission from mildly relativistic dynamical ejecta of neutron star mergers: spectrum and sky image
Abstract
Binary neutron star mergers are expected to produce fast dynamical ejecta, with mildly relativistic velocities extending to $\beta=v/c>0.6$. In a preceding paper, we derived an analytic description of the time-dependent radio to X-ray synchrotron flux produced by collisionless shocks driven by such fast ejecta into the interstellar medium, for spherical ejecta with broken power-law mass (or energy) distributions, $M(>\gamma\beta)\propto(\gamma\beta)^{-s}$ with $s=s_\text{KN}$ at $\gamma\beta<\gamma_0\beta_0$ and $s=s_\text{ft}$ at $\gamma\beta>\gamma_0\beta_0$ (where $\gamma$ is the Lorentz factor). Here, we extend our analysis and provide analytic expressions for the self-absorption frequency, the cooling frequency, and the observed angular size of the emitting region (which appears as a ring in the sky). For parameter values characteristic of merger calculation results -- a "shallow" mass distribution, $1 5$, "fast tail" mass distribution -- the analytic results reproduce well (to tens of percent accuracy) the results of detailed numeric calculations, a significant improvement over earlier order-of-magnitude estimates (based on extrapolations of results valid for $\gamma\beta\ll1$).
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Gilad Sadeh, Noya Linder, Eli Waxman. 2024-03-11. Non-thermal emission from mildly relativistic dynamical ejecta of neutron star mergers: spectrum and sky image. https://doi.org/10.1093/mnras%2Fstae1286
Cite the original work for its findings. Save a collection to share your selection of sources.