Appearance vs Disappearance of broad absorption line troughs in quasars
arXiv:2103.08499 · doi:10.1093/mnras/stab782
Abstract
We present a new set of 84 Broad absorption line (BAL) quasars ( 1.7 \zem 4.4) exhibiting an appearance of \civ BAL troughs over 0.34.8 rest-frame years by comparing the Sloan Digital Sky Survey Data Release (SDSSDR)-7, SDSSDR-12, and SDSSDR-14 quasar catalogs. We contrast the nature of BAL variability in this appearing BAL quasar sample with a disappearing BAL quasar sample studied in literature by comparing the quasar's intrinsic, BAL trough, and continuum parameters between the two samples. We find that appearing BAL quasars have relatively higher redshift and smaller probed timescales as compared to the disappearing BAL quasars. To mitigate the effect of any redshift bias, we created control samples of appearing and disappearing BAL quasars that have similar redshift distribution. We find that the appearing BAL quasars are relatively brighter and have shallower and wider BAL troughs compared to the disappearing BAL sample. The distribution of quasar continuum variability parameters between the two samples is clearly separated, with the appearance of the BAL troughs being accompanied by the dimming of the continuum and vice versa. Spectral index variations in the two samples also point to the anti-correlation between the BAL trough and continuum variations consistent with the "bluer when brighter" trend in quasars. We show that the intrinsic dust model is less likely to be a favorable scenario in explaining BAL appearance/disappearance. Our analysis suggests that the extreme variations of BAL troughs like BAL appearance/disappearance are mainly driven by changes in the ionization conditions of the absorbing gas.
16 pages, 9 figures, Accepted for publication in MNRAS
References in corpus (15)
- A Catalog of Quasar Properties from SDSS DR7
- The Sloan Digital Sky Survey Quasar Catalog: twelfth data release
- A Catalog of Broad Absorption Line Quasars in Sloan Digital Sky Survey Data Release 5
- Quasar Broad Absorption Line Variability on Multi-Year Time Scales
- Outflows and the Physical Properties of Quasars
- Broad Absorption Line Variability in Repeat Quasar Observations from the Sloan Digital Sky Survey
- The Discovery of Timescale-Dependent Color Variability of Quasars
- Variation of ionizing continuum: the main driver of Broad Absorption Line Variability
- A Variable PV Broad Absorption Line and Quasar Outflow Energetics
- Outflow and hot dust emission in broad absorption line quasars
- Correlation between the variation of the ionizing continuum and broad absorption lines
- Emergence of a Quasar Outflow
- Broad Absorption Line Variability in Radio-Loud Quasars
- Ionization driven intrinsic absorption line variability of BAL quasars in the Stripe 82 region
- Correlation between the ionizing continuum and variable C iv broad absorption line in multi-epoch observations of SDSS J141007.74+541203.3
Cited by in corpus (10)
- Connecting radio emission to AGN wind properties with Broad Absorption Line Quasars
- Discovery of a cool, metal-rich gas reservoir in the outskirts of z ~ 0.5 clusters
- [OIII] emission in z=2 quasars with and without Broad Absorption Lines
- How does the radio enhancement of broad absorption line quasars relate to colour and accretion rate?
- Time variability of ultra-fast BAL outflows using SALT: C IV equivalent width analysis
- Coordinated time variability of multi-phase ultra-fast outflows in J132216.25+052446.3
- Fraction of broad absorption line quasars in different radio morphologies
- Multi-epoch spectroscopy of Mg II broad absorption line transitions
- X-ray selected broad absorption line quasars in SDSS-V: BALs and non-BALs span the same range of X-ray properties
- Transient LoBALs at high velocities: A Case of Extreme Broad Absorption Line Variability in J115636.82+085628.9