English

Explaining the Broad-line Region through photoionisation modelling

High Energy Astrophysical Phenomena 2019-11-13 v1 Astrophysics of Galaxies

Abstract

Broad-line regions (BLR) are one of the main components that constitute the phenomenological picture of active galaxies near the vicinity of the accreting supermassive black holes. Both theoretical and observational studies have shown that the BLR is made of dense, ionized gas clumps that have a strong virialized distribution at parsec-scale distances from the nuclei. Using a theoretically motivated photoionized gas model, I constrain the ionisation parameter (U) and cloud density (nH_{\rm{H}}) as a function of the strength of the FeII emission. Recent observations in the reverberation mapping studies have contested the standard radius-luminosity relation showing increased dispersion in the relation, in particular, after the inclusion of highly accreting quasars. I incorporate the departure coefficient that accounts for this dispersion. This departure term in terms of the dimensionless accretion rate (M˙\dot{\mathcal{M}}) and Eddington ratio (Lbol/LEddL\mathrm{_{bol}}/L\mathrm{_{Edd}}), also includes the virial factor that accounts for the BLR geometry. I then combine the fundamental plane relation for the BLR to connect the FeII strength (RFeII_{\rm{FeII}}) in terms of U and nH_{\rm{H}} using selected values for the shape of the broad Hβ\beta profile.

Keywords

Cite

@article{arxiv.1911.04800,
  title  = {Explaining the Broad-line Region through photoionisation modelling},
  author = {Swayamtrupta Panda},
  journal= {arXiv preprint arXiv:1911.04800},
  year   = {2019}
}

Comments

6 pages, 3 figures, contribution to the Proceedings of the XXXIX Polish Astronomical Society Meeting (09-12 September 2019, Olsztyn, Poland)

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