Fe emission and ionized excess absorption in the luminous quasar 3C109 with XMM-Newton
arXiv:astro-ph/0605747 · doi:10.1111/j.1365-2966.2006.10641.x
Abstract
We report results from an XMM-Newton observation of the broad-line radio galaxy 3C109 (z=0.3056). Confirming previous results, an Fe emission line is detected, possibly comprising a broad component. However, the data cannot distinguish between an untruncated accretion disc and a case in which the innermost 20-30 gravitational radii are missing. In fact, a partial-covering plus narrow Fe line scenario is not ruled out statistically. However, the absorber would have to comprise hundreds/thousands very compact clouds close to the X-ray source, which seems rather extreme a requirement. The 2-10 keV intrinsic luminosity of 3C109 is of the order of 2-3x10^45 erg/s which, combined with a recent black hole mass estimate of ~2x10^8 M_sun, implies an Eddington ratio greater than unity. If partial covering is excluded, the observed reflection fraction (of the order of unity), steep photon index (1.86), and Fe line equivalent width (about 100 eV) all suggest to exclude that the X-ray continuum is strongly beamed, indicating that the large Eddington ratio is associated with a radiatively efficient accretion process. We also confirm previous findings on the detection of low energy absorption in excess of the Galactic value. The better quality of the XMM-Newton data enables us to attribute the excess absorption to slightly ionized gas in the line of sight, located at the redshift of 3C109. [abriged]
accepted for publication in MNRAS
References in corpus (1)
Cited by in corpus (27)
- White Dwarf Mass Distribution in the SDSS
- Spitzer spectroscopy of carbon stars in the Small Magellanic Cloud
- SN 2019ehk: A Double-Peaked Ca-rich Transient with Luminous X-ray Emission and Shock-Ionized Spectral Features
- Asteroseismological constraints on the coolest GW Vir variable star (PG 1159-type)PG 0122+200
- Granada oscillation Code (GraCo)
- The spectral evolution of white dwarfs: where do we stand?
- The peculiar Ca-rich SN 2019ehk: Evidence for a Type IIb core-collapse supernova from a low mass stripped progenitor
- Expansion of hydrogen-poor knots in the born-again planetary nebulae A30 and A78
- The diffusion-induced nova scenario. CK Vul and PB 8 as possible observational counterparts
- Evidence of thin helium envelopes in PG1159 stars
- The born-again planetary nebula A78: an X-ray twin of A30
- Near-Chandrasekhar-Mass Type Ia Supernovae from the Double-Degenerate Channel
- On the systematics of asteroseismological mass determinations of PG1159 stars
- Single and binary evolution of Population III stars and their supernovae light curves
- On the robustness of H-deficient post-AGB tracks
- Evidence of Spectral Evolution on the white dwarf sample from the Gaia Mission
- Discovery of a Fast Expanding Shell in the Inside-out Born-Again Planetary Nebula HuBi 1 Through High-Dispersion Integral Field Spectroscopy
- Supernova Shocks Cannot Explain the Inflated State of Hypervelocity Runaways from White Dwarf Binaries
- Using Ti Emission to Differentiate Between Thermonuclear Supernova Progenitors
- New models for the rapid evolution of the central star of the Stingray Nebula
- The effects of convection criteria on the evolution of population III stars and the detectability of their supernovae
- A primer on the formation and evolution of hydrogen deficient Central Stars of Planetary Nebulæ and Related Objects
- How an overweight and rapidly rotating PG 1159 star in the Galactic halo challenges evolutionary models
- A comparison of best fits obtained in white dwarf asteroseismology using the WDEC and the LPCODE
- Pre-explosion helium shell flash in type Ia supernovae
- Constraints from parallaxes and average period spacings in the asteroseismic study of 8 DAVs
- LISA Galactic Binaries in the Roman Galactic Bulge Time-Domain Survey