English

Quasars: from the Physics of Line Formation to Cosmology

Astrophysics of Galaxies 2019-01-30 v1 Cosmology and Nongalactic Astrophysics

Abstract

Quasars accreting matter at very high rates (known as extreme Population A [xA] or super-Eddington accreting massive black holes) provide a new class of distance indicators covering cosmic epochs from the present-day Universe up to less than 1 Gyr from the Big Bang. The very high accretion rate makes it possible that massive black holes hosted in xA quasars radiate at a stable, extreme luminosity-to-mass ratio. This in turns translates into stable physical and dynamical conditions of the mildly ionized gas in the quasar low-ionization line emitting region. In this contribution, we analyze the main optical and UV spectral properties of extreme Population A quasars that make them easily identifiable in large spectroscopic surveys at low-z (z < 1) and intermediate-z (2 < z < 2.6), and the physical conditions that are derived for the formation of their emission lines. Ultimately, the analysis supports the possibility of identifying a virial broadening estimator from low-ionization line widths, and the conceptual validity of the redshift-independent luminosity estimates based on virial broadening for a known luminosity-to-mass ratio.

Keywords

Cite

@article{arxiv.1901.10032,
  title  = {Quasars: from the Physics of Line Formation to Cosmology},
  author = {P. Marziani and E. Bon and N. Bon and A. del Olmo and M. L. Martínez-Aldama and M. D'Onofrio and D. Dultzin and C. A. Negrete and G. M. Stirpe},
  journal= {arXiv preprint arXiv:1901.10032},
  year   = {2019}
}

Comments

13 pages, 5 figures. Invited lecture at SPIG 2018, Belgrade. To appear in Atom