English

A detailed spectroscopic study of Tidal Disruption Events

High Energy Astrophysical Phenomena 2022-03-28 v2

Abstract

Spectroscopically, TDEs are characterized by broad ( 104^{4} km/s) emission lines and show large diversity as well as different line profiles. After carefully and consistently performing a series of data reduction tasks including host galaxy light subtraction, we present here the first detailed, spectroscopic population study of 16 optical/UV TDEs. We report a time lag between the peaks of the optical light-curves and the peak luminosity of Hα\alpha spanning between 7 - 45 days. If interpreted as light-echoes, these lags correspond to distances of 2 - 12 x 1016^{16} cm, one to two orders of magnitudes larger than the estimated blackbody radii (RBB_{\rm BB}) of the same TDEs and we discuss the possible origin of this surprisingly large discrepancy. We also report time lags for the peak luminosity of He I λ\lambda5876 line; smaller than the ones of Hα\alpha for H TDEs and similar or larger for N III Bowen TDEs. We report that N III Bowen TDEs have lower Hα\alpha velocity widths compared to the rest of the TDEs in our sample and we also find that a strong X-ray to optical ratio might imply weakening of the line widths. Furthermore, we study the evolution of line luminosities and ratios with respect to their radii (RBB_{\rm BB}) and temperatures (TBB_{\rm BB}). We find a linear relationship between Hα\alpha luminosity and the RBB_{\rm BB} and potentially an inverse power-law relation with TBB_{\rm BB} leading to weaker Hα\alpha emission for TBB_{\rm BB} \geq 25000 K. The He II/He I ratio becomes large at the same temperatures possibly pointing to an ionization effect. The He II/Hα\alpha ratio becomes larger as the photospheric radius recedes, implying a stratified photosphere where Helium lies deeper than Hydrogen. We suggest that the large diversity of the spectroscopic features seen in TDEs along with their X-ray properties, can potentially be attributed to viewing angle effects.

Keywords

Cite

@article{arxiv.2109.00016,
  title  = {A detailed spectroscopic study of Tidal Disruption Events},
  author = {P. Charalampopoulos and G. Leloudas and D. B. Malesani and T. Wevers and I. Arcavi and M. Nicholl and M. Pursiainen and A. Lawrence and J. P. Anderson and S. Benetti and G. Cannizzaro and T. -W. Chen and L. Galbany and M. Gromadzki and C. P. Gutiérrez and C. Inserra and P. G. Jonker and T. E. Müller-Bravo and F. Onori and P. Short and J. Sollerman and D. R. Young},
  journal= {arXiv preprint arXiv:2109.00016},
  year   = {2022}
}

Comments

Published in A&A (part of 2022 A&A Highlights). 31 pages (10 of the Appendix), 21 Figures