The spectra of a radiative reprocessing outflow model for fast blue optical transients
arXiv:2411.18985 · doi:10.3847/1538-4357/ae0181
Abstract
The radiation reprocessing model, in which an optically-thick outflow absorbs the high-energy emission from a central source and re-emits in longer wavelengths, has been frequently invoked to explain some optically bright transients, such as fast blue optical transients (FBOTs) whose progenitor and explosion mechanism are still unknown. Previous studies on this model did not take into account the frequency dependence of the opacity. We study the radiative reprocessing and calculate the UV-optical-NIR band spectra from a spherical outflow composed of pure hydrogen gas, for a time-dependent outflowing mass rate. Electron scattering and frequency-dependent bound-free, free-free opacities are considered. The spectrum deviates from the blackbody at NIR and UV frequencies; in particular, it has at NIR frequencies, because at these frequencies the absorption optical depth from the outflow's outer edge to the so-called photon trapping radius is large and is frequency dependent. We apply our model to the proto-type FBOT AT2018cow by {the spectra} to the observed SED. The best-fit mass loss rate suggests that the total outflow mass in AT2018cow is . If that equals the total mass lost during an explosion, and if the progenitor is a blue supergiant (with a pre-explosion mass of ), then it will suggest that the central compact remnant mass is at least . This would imply that the central remnant is a black hole.
11 pages, 5 figures, accepted for publication in The Astrophysical Journal
References in corpus (11)
- Rapidly-Evolving and Luminous Transients from Pan-STARRS1
- Time Dependent Monte Carlo Radiative Transfer Calculations For 3-Dimensional Supernova Spectra, Lightcurves, and Polarization
- Fallback and Black Hole Production in Massive Stars
- The Koala: A Fast Blue Optical Transient with Luminous Radio Emission from a Starburst Dwarf Galaxy at
- Evidence for a Compact Object in the Aftermath of the Extra-Galactic Transient AT2018cow
- The Peculiar Transient AT2018cow: A Possible Origin of A Type Ibn/IIn Supernova
- Optical line spectra of tidal disruption events from reprocessing in optically thick outflows
- The Nature of ULX Source M101 X-1: Optically Thick Outflow from A Stellar Mass Black Hole
- A hot and luminous source at the site of the fast transient AT2018cow at 2-3 years after its explosion
- Minutes-duration Optical Flares with Supernova Luminosities
- A flash of polarized optical light points to an aspherical "cow"