English

PS18kh: A New Tidal Disruption Event with a Non-Axisymmetric Accretion Disk

High Energy Astrophysical Phenomena 2019-10-14 v3

Abstract

We present the discovery of PS18kh, a tidal disruption event (TDE) discovered at the center of SDSS J075654.53+341543.6 (d322d\simeq322 Mpc) by the Pan-STARRS Survey for Transients. Our dataset includes pre-discovery survey data from Pan-STARRS, the All-Sky Automated Survey for Supernovae (ASAS-SN), and the Asteroid Terrestrial-impact Last Alert System (ATLAS) as well as high-cadence, multi-wavelength follow-up data from ground-based telescopes and Swift, spanning from 56 days before peak light until 75 days after. The optical/UV emission from PS18kh is well-fit as a blackbody with temperatures ranging from T12000T\simeq12000 K to T25000T\simeq25000 K and it peaked at a luminosity of L8.8×1043L\simeq8.8\times10^{43} ergs s1^{-1}. PS18kh radiated E=(3.45±0.22)×1050E=(3.45\pm0.22)\times10^{50} ergs over the period of observation, with (1.42±0.20)×1050(1.42\pm0.20)\times10^{50} ergs being released during the rise to peak. Spectra of PS18kh show a changing, boxy/double-peaked Hα\alpha emission feature, which becomes more prominent over time. We use models of non-axisymmetric accretion disks to describe the profile of the Hα\alpha line and its evolution. We find that at early times the high accretion rate leads the disk to emit a wind which modifies the shape of the line profile and makes it bell-shaped. At late times, the wind becomes optically thin, allowing the non-axisymmetric perturbations to show up in the line profile. The line-emitting portion of the disk extends from rin60rgr_{\rm in}\sim60r_{\rm g} to an outer radius of rout1400rgr_{\rm out}\sim1400r_{\rm g} and the perturbations can be represented either as an eccentricity in the outer rings of the disk or as a spiral arm in the inner disk.

Keywords

Cite

@article{arxiv.1808.02890,
  title  = {PS18kh: A New Tidal Disruption Event with a Non-Axisymmetric Accretion Disk},
  author = {T. W. -S. Holoien and M. E. Huber and B. J. Shappee and M. Eracleous and K. Auchettl and J. S. Brown and M. A. Tucker and K. C. Chambers and C. S. Kochanek and K. Z. Stanek and A. Rest and D. Bersier and R. S. Post and G. Aldering and K. A. Ponder and J. D. Simon and E. Kankare and D. Dong. and G. Hallinan and N. A. Reddy and R. L. Sanders and M. W. Topping and J. Bulger and T. B. Lowe and E. A. Magnier and A. S. B. Schultz and C. Z. Waters and M. Willman and D. Wright and D. R. Young and Subo Dong and J. L. Prieto and Todd A. Thompson and L. Denneau and H. Flewelling and A. N. Heinze and S. J. Smartt and K. W. Smith and B. Stalder and J. L. Tonry and H. Weiland},
  journal= {arXiv preprint arXiv:1808.02890},
  year   = {2019}
}

Comments

27 pages, 13 figures, 8 tables. Updated to reflect changes made in the published version. A table containing the host-subtracted photometry presented in this manuscript is included in machine-readable format as an ancillary file