XMM-Newton and Chandra Spectroscopy of the Variable High-Energy Absorption of PG 1115+080: Refined Outflow Constraints
arXiv:astro-ph/0701104 · doi:10.1086/512364
Abstract
We present results from multi-epoch spectral analysis of XMM-Newton and Chandra observations of the mini broad absorption line (BAL) quasar PG 1115+080. This is one of the few X-ray detected mini-BAL quasars to date that is bright enough in the X-ray band, mostly due to large gravitational-lensing magnifications, to allow in-depth spectral analysis. The present XMM-Newton observations of PG 1115+080 have provided the highest signal-to-noise X-ray spectra of a mini-BAL quasar obtained to date. By modeling the spectra of PG 1115+080 we have obtained constraints on the column density and ionization state of its outflowing absorbing gas. A comparison between these constraints over several epochs indicates significant variability in the properties of the outflowing absorbers in PG 1115+080. The depths of the high-energy broad absorption features in PG 1115+080 show a significant decrease between the first two observation epochs separated by a rest-frame timescale of ~ 1 year. This variability supports the intrinsic nature of these absorbers. Assuming the interpretation that the high-energy absorption features arise from highly ionized Fe XXV we constrain the fraction of the total bolometric energy released by quasars PG 1115+080 and APM 08279+5225 into the IGM in the form of kinetic energy to be epsilon_k = 0.64(-0.40,+0.52) (68% confidence), and epsilon_k =0.09(-0.05,+0.07), respectively. According to recent theoretical studies this range of efficiencies is large enough to influence significantly the formation of the host galaxy and to regulate the growth of the central black hole.
20 pages, includes 5 figures, Accepted for publication in AJ
References in corpus (2)
Cited by in corpus (19)
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- Multiwavelength study of massive galaxies at z~2. II. Widespread Compton thick AGN and the concurrent growth of black holes and bulges
- Hot Atmospheres, Cold Gas, AGN Feedback and the Evolution of Early Type Galaxies: a Topical Perspective
- Integral field spectroscopy of nearby QSOs: I. ENLR size-luminosity relation, ongoing star formation & resolved gas-phase metallicities
- On the evidence for narrow, relativistically shifted X-ray lines
- Monitoring the Variability of Intrinsic Absorption Lines in Quasar Spectra
- Measuring AGN Feedback with the Sunyaev-Zel'dovich Effect
- On the absorption of X-ray bright broad absorption line quasars
- Highlights and Discoveries from the Chandra X-ray Observatory
- Anisotropic AGN Outflows and Enrichment of the Intergalactic Medium
- Exploratory Study of the X-Ray Properties of Quasars With Intrinsic Narrow Absorption Lines
- The Thermal Sunyaev-Zel'dovich Effect from Massive, Quiescent 0.5 z 1.5 Galaxies
- Properties of X-ray selected Broad Absorption Line Quasars
- Evidence of Extended Dust and Feedback around z1 Quiescent Galaxies via Millimeter Observations
- Milliarcsecond X-ray astrometry to resolve inner regions of AGN at using gravitational lensing
- Relativistic Outflows in two quasars in the Chandra Deep Field South
- Multiphase Powerful Outflows Detected in High-z Quasars
- ArkenstoneBH. A model for high-specific energy black hole feedback in cosmological simulations
- Using strong lensing to understand the microJy radio emission in two radio quiet quasars at redshift 1.7