English

The X-ray and Radio Loud Fast Blue Optical Transient AT2020mrf: Implications for an Emerging Class of Engine-Driven Massive Star Explosions

High Energy Astrophysical Phenomena 2022-08-03 v2

Abstract

We present AT2020mrf (SRGe J154754.2++443907), an extra-galactic (z=0.1353z=0.1353) fast blue optical transient (FBOT) with a rise time of tg,rise=3.7t_{g,\rm rise}=3.7 days and a peak luminosity of Mg,peak=20.0M_{g,\rm peak}=-20.0. Its optical spectrum around peak shows a broad (v0.1cv\sim0.1c) emission feature on a blue continuum (T2×104T\sim2\times10^4 K), which bears a striking resemblance to AT2018cow. Its bright radio emission (νLν=1.2×1039ergs1\nu L_\nu = 1.2\times 10^{39}\,{\rm erg\,s^{-1}}; νrest=7.4\nu_{\rm rest}= 7.4 GHz; 261 days) is similar to four other AT2018cow-like events, and can be explained by synchrotron radiation from the interaction between a sub-relativistic (0.07\gtrsim0.07-0.08c0.08c) forward shock and a dense environment (M˙103Myr1\dot M \lesssim 10^{-3}\,M_\odot \,{\rm yr^{-1}} for vw=103kms1v_{\rm w}=10^3\,{\rm km\,s^{-1}}). AT2020mrf occurs in a galaxy with M108MM_\ast \sim 10^8\,M_\odot and specific star formation rate 1010yr1\sim 10^{-10}\, {\rm yr^{-1}}, supporting the idea that AT2018cow-like events are preferentially hosted by dwarf galaxies. The X-ray luminosity of AT2020mrf is the highest among FBOTs. At 35-37 days, SRG/eROSITA detected luminous (LX2×1043ergs1L_{\rm X}\sim 2\times 10^{43}\,{\rm erg\,s^{-1}}; 0.3-10 keV) X-ray emission. The X-ray spectral shape (fνν0.8f_\nu \propto \nu^{-0.8}) and erratic intraday variability are reminiscent of AT2018cow, but the luminosity is a factor of 20\sim20 greater than AT2018cow. At 328 days, Chandra detected it at LX1042ergs1L_{\rm X}\sim10^{42}\,{\rm erg\,s^{-1}}, which is >200>200 times more luminous than AT2018cow and CSS161010. At the same time, the X-ray emission remains variable on the timescale of 1\sim1 day. We show that a central engine, probably a millisecond magnetar or an accreting black hole, is required to power the explosion. We predict the rates at which events like AT2018cow and AT2020mrf will be detected by SRG and Einstein Probe.

Keywords

Cite

@article{arxiv.2112.00751,
  title  = {The X-ray and Radio Loud Fast Blue Optical Transient AT2020mrf: Implications for an Emerging Class of Engine-Driven Massive Star Explosions},
  author = {Yuhan Yao and Anna Y. Q. Ho and Pavel Medvedev and Nayana A. J. and Daniel A. Perley and S. R. Kulkarni and Poonam Chandra and Sergey Sazonov and Marat Gilfanov and Georgii Khorunzhev and David K. Khatami and Rashid Sunyaev},
  journal= {arXiv preprint arXiv:2112.00751},
  year   = {2022}
}

Comments

26 pages, 18 figures, submitted to ApJ