Probing the Structure of Accreting Compact Sources Through X-Ray Time Lags and Spectra
arXiv:astro-ph/9810143 · doi:10.1086/306808
Abstract
We exhibit, by compiling all data sets we can acquire, that the Fourier frequency dependent hard X-ray lags, first observed in the analysis of aperiodic variability of the light curves of the black hole candidate Cygnus X-1, appear to be a property shared by several other accreting black hole candidate sources and also by the different spectral states of this source. We then present both analytic and numerical models of these time lags resulting by the process of Comptonization in a variety of hot electron configurations. We argue that under the assumption that the observed spectra are due to Comptonization, the dependence of the lags on the Fourier period provides a means for mapping the spatial density profile of the hot electron plasma, while the period at which the lags eventually level--off provides an estimate of the size of the scattering cloud. We further examine the influence of the location and spatial extent of the soft photon source on the form of the resulting lags for a variety of configurations; we conclude that the study of the X-ray hard lags can provide clues about these parameters of the Comptonization process too. Fits of the existing data with our models indicate that the size of the Comptonizing clouds are quite large in extent ( 1 light second) with inferred radial density profiles which are in many instances inconsistent with those of the standard dynamical models, while the extent of the source of soft photons appears to be much smaller than those of the hot electrons by roughly two orders of magnitude and its location consistent with the center of the hot electron corona.
20 pages Latex, 11 postscript figures, to appear in the Astrophysical Journal, Vol 512, Feb 20 issue
References in corpus (3)
Cited by in corpus (21)
- Combined Long and Short Timescale X-ray Variability of NGC4051 with RXTE and XMM-Newton
- Hard X-ray Emission From Low Mass X-ray Binaries
- Two Different Long-term Behaviors in Black-Hole Candidates: Evidence for Two Accretion Flows?
- The properties of the relativistic iron K-line in NGC 3516
- Frequency-dependent time lags in the X-ray emission of the Seyfert galaxy NGC 7469
- The energy dependence of the centroid frequency and phase lag of the QPOs in GRS 1915+105
- Time Domain Analysis of Variability in Cygnus X-1: Constraints on the Emission Models
- Energy and time-lag spectra of black-hole systems in the low state
- GRO J1655-40: Early Stages of the 2005 Outburst
- Phase Lag and Coherence Function of X-ray emission from Black Hole Candidate XTE J1550-564
- Spectra and time variability of galactic black-hole X-ray sources in the low/hard state
- Understanding Spectral Variability and Time Lags in Accreting Black Holes
- Modeling the X-ray - UV Correlations in NGC 3516
- A Possible 100-day X-ray-to-Optical Lag in the Variations of the Seyfert 1 Nucleus NGC 3516
- Modeling The Time Variability of Accreting Compact Sources
- Relativistic Outflows from Advection-Dominated Accretion Disks around Black Holes
- An Integrated Model for the Production of X-Ray Time Lags and Quiescent Spectra from Homogeneous and Inhomogeneous Black Hole Accretion Coronae
- Modeling the response of a standard accretion disc to stochastic viscous fluctuations
- A Fourier Transformed Bremsstrahlung Flash Model for the Production of X-Ray Time Lags in Accreting Black Hole Sources
- QPOs in the Time Domain: An Autocorrelation Analysis
- Cygnus X-1 from RXTE: Monitoring the short term variability