vKompth: A variable Comptonisation model for low-frequency quasi-periodic oscillations in black-hole X-ray binaries
Candela Bellavita, Federico Garc\'ia, Mariano M\'endez, Konstantinos, Karpouzas

TL;DR
This paper introduces a time-dependent Comptonisation model for low-frequency QPOs in black-hole X-ray binaries, successfully fitting observed spectra and revealing insights into accretion flow properties.
Contribution
The paper presents a novel variable Comptonisation model that accounts for feedback and fits both type-B and C QPOs in black-hole systems better than previous models.
Findings
Model fits observed QPO spectra more accurately.
Feedback significantly influences phase-lag spectra.
Minimum-lag energy correlates with disc temperature.
Abstract
Low mass X-ray binaries (LMXBs) show strong variability over a broad range of time scales. The analysis of this variability, in particular of the quasi-periodic oscillations (QPO), is key to understanding the properties of the innermost regions of the accretion flow in these systems. We present a time-dependent Comptonisation model that fits the energy-dependent rms-amplitude and phase-lag spectra of low-frequency QPOs in black-hole (BH) LMXBs. We model the accretion disc as a multi-temperature blackbody source emitting soft photons which are then Compton up-scattered in a spherical corona, including feedback of Comptonised photons that return to the disc. We compare our results with those obtained with a model in which the seed-photons source is a spherical blackbody: at low energies the time-averaged, rms and phase-lag spectra are smoother for the disk-blackbody than for a blackbody,…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Astrophysics and Cosmic Phenomena · Astronomy and Astrophysical Research
