The origin of the soft excess in the luminous quasar HE 1029-1401
arXiv:2405.13479 · doi:10.1051/0004-6361/202449524
Abstract
The enigmatic and intriguing phenomenon of the "soft excess" observed in the X-ray spectra of luminous quasars continues to be a subject of considerable interest and debate in the field of high-energy astrophysics. This study focuses on the quasar HE 1029-1401 (, ), with a particular emphasis on investigating the properties of the hot corona and the physical origin of the soft excess. In this study, we present the results of a joint \textit{XMM-Newton}/\textit{NuSTAR} monitoring campaign of this quasar conducted in May 2022. The source exhibits a cold and narrow Fe emission line at 6.4 keV, in addition to the detection of a broad component. Our findings suggest that the soft excess observed in HE 1029-1401 can be adequately explained by Comptonized emission originating from a warm corona. Specifically, fitting the spectra with two \nthcomp\, component we found that the warm corona is characterized by a photon index () of and by an electron temperature () of keV, while the optical depth () is found to be . We also test more physical models for the warm corona, corresponding to two scenarios: pure Comptonization and Comptonization plus reflection. Both models provide a good fit to the data, and are in agreement with a radially extended warm corona having a size of a few tens of gravitational radii.
accepted by A&A
References in corpus (8)
- CAIXA: a Catalogue of AGN In the XMM-Newton Archive I. Spectral analysis
- Radiation spectra of warm and optically thick coronae in AGN
- A deep X-ray view of the bare AGN Ark120. IV. XMM-Newton and NuSTAR spectra dominated by two temperature (warm, hot) Comptonization processes
- The soft X-ray excess: NLS1s vs. BLS1s
- The SOUX AGN sample: Optical/UV/X-ray SEDs and the nature of the disc
- reXcor: A Model of the X-ray Spectrum of Active Galactic Nuclei that Combines Ionized Reflection and a Warm Corona
- Sustaining a Warm Corona in Active Galactic Nuclei Accretion Discs
- Breaking the rules at 0.45: the rebel case of RBS 1055