BAL effect in quasars due to source orientation

Fuente: arXiv
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Main Authors: Sniegowska, M., Naddaf, M. H., Martinez-Aldama, M. L., Marziani, P., Panda, S., Czerny, B.
Format: Preprint
Published: 2023
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author Sniegowska, M.
Naddaf, M. H.
Martinez-Aldama, M. L.
Marziani, P.
Panda, S.
Czerny, B.
author_facet Sniegowska, M.
Naddaf, M. H.
Martinez-Aldama, M. L.
Marziani, P.
Panda, S.
Czerny, B.
contents We investigated a scenario where the presence of a broad absorption line (BAL) feature in quasars (QSOs) is contingent upon the line of sight being situated within an outflow cone emanating from the source. We examined the mechanism of dust-driven winds based on the failed radiatively accelerated dusty outflow (FRADO) model proposed by Czerny & Hryniewicz, letting it be responsible for the formation of massive outflow. We calculated the probability of observing the BAL effect from the geometry of outflow which is a function of global parameters of black hole mass (M$_{BH}$), Eddington ratio ($α_{Edd}$), and metallicity (Z). We then compared the results with prevalence of BAL QSOs in a sample of observational data from SDSS. The consistency of our model with the data supports the interpretation of the BAL phenomenon as a result of source orientation, rather than a transitory stage in AGN evolution
format Preprint
id arxiv_https___arxiv_org_abs_2306_03224
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle BAL effect in quasars due to source orientation
Sniegowska, M.
Naddaf, M. H.
Martinez-Aldama, M. L.
Marziani, P.
Panda, S.
Czerny, B.
Astrophysics of Galaxies
We investigated a scenario where the presence of a broad absorption line (BAL) feature in quasars (QSOs) is contingent upon the line of sight being situated within an outflow cone emanating from the source. We examined the mechanism of dust-driven winds based on the failed radiatively accelerated dusty outflow (FRADO) model proposed by Czerny & Hryniewicz, letting it be responsible for the formation of massive outflow. We calculated the probability of observing the BAL effect from the geometry of outflow which is a function of global parameters of black hole mass (M$_{BH}$), Eddington ratio ($α_{Edd}$), and metallicity (Z). We then compared the results with prevalence of BAL QSOs in a sample of observational data from SDSS. The consistency of our model with the data supports the interpretation of the BAL phenomenon as a result of source orientation, rather than a transitory stage in AGN evolution
title BAL effect in quasars due to source orientation
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2306.03224