Long term variability of Cygnus X-1. VIII. A spectral-timing look at low energies with NICER
arXiv:2405.07754 · doi:10.1051/0004-6361/202449333
Abstract
The Neutron Star Interior Composition Explorer (NICER) monitoring campaign of Cyg X-1 allows us to study its spectral-timing behavior at energies keV across all states. The hard state power spectrum can be decomposed into two main broad Lorentzians with a transition at around 1 Hz. The lower-frequency Lorentzian is the dominant component at low energies. The higher-frequency Lorentzian begins to contribute significantly to the variability above 1.5 keV and dominates at high energies. We show that the low- and high-frequency Lorentzians likely represent individual physical processes. The lower-frequency Lorentzian can be associated with a (possibly Comptonized) disk component, while the higher-frequency Lorentzian is clearly associated with the Comptonizing plasma. At the transition of these components, we discover a low-energy timing phenomenon characterized by an abrupt lag change of hard ( keV) with respect to soft ( keV) photons, accompanied by a drop in coherence, and a reduction in amplitude of the second broad Lorentzian. The frequency of the phenomenon increases with the frequencies of the Lorentzians as the source softens and cannot be seen when the power spectrum is single-humped. A comparison to transient low-mass X-ray binaries shows that this feature does not only appear in Cyg X-1, but that it is a general property of accreting black hole binaries. In Cyg X-1, we find that the variability at low and high energies is overall highly coherent in the hard and intermediate states. The high coherence shows that there is a process at work which links the variability, suggesting a physical connection between the accretion disk and Comptonizing plasma. This process fundamentally changes in the soft state, where strong red noise at high energies is incoherent to the variability at low energies.
18+29 pages, 17+54 figures, accepted for publication in Astronomy & Astrophysics
References in corpus (27)
- X-ray reverberation around accreting black holes
- Cygnus X-1 contains a 21-solar mass black hole -- implications for massive star winds
- The corona contracts in a black-hole transient
- An Empirical Background Model for the NICER X-ray Timing Instrument
- A public relativistic transfer function model for X-ray reverberation mapping of accreting black holes
- Disk, Corona, Jet Connection in the Intermediate State of MAXI J1820+070 Revealed by NICER Spectral-Timing Analysis
- Accretion Geometry in the Hard State of the Black-Hole X-Ray Binary MAXI J1820+070
- Evolution of the 0.01 - 25 Hz power spectral components in Cygnus X-1
- The NICER "Reverberation Machine": A Systematic Study of Time Lags in Black Hole X-Ray Binaries
- NICER observations reveal that the X-ray transient MAXI J1348-630 is a Black Hole X-ray binary
- Long term variability of Cygnus X-1: VII. Orbital variability of the focussed wind in Cyg X-1 / HDE 226868 system
- An Empirical Method for Improving the Quality of RXTE PCA Spectra
- AstroSat/LAXPC observation of Cygnus X-1 in the hard state
- An X-ray reverberation mass measurement of Cygnus X-1
- Modelling hard and soft state of Cygnus X-1 with propagating mass accretion rate fluctuations
- Modelling correlated variability in accreting black holes: the effect of high density and variable ionisation on reverberation lags
- Probing the temporal variability of Cygnus X-1 into the soft state
- Chandra X-ray spectroscopy of the focused wind in the Cygnus X-1 system III. Dipping in the low/hard state
- Correlated radio--X-ray variability of Galactic Black Holes: A radio--X-ray flare in Cygnus X-1
- A stochastic propagation model to the energy dependent rapid temporal behaviour of Cygnus X-1 as observed by AstroSat in the hard state
- NICER/NuSTAR Characterization of 4U 1957+11: A Near Maximally Spinning Black Hole Potentially in the Mass Gap
- Color-color diagrams as tools for assessment of the variable absorption in high mass X-ray binaries
- The X-ray spectral-timing contribution of the stellar wind in the hard state of Cyg X-1
- Evolution of Accretion Modes between Spectral States Inferred from Spectral and Timing Analysis of Cygnus X-1 with Insight-HXMT observations
- The spectral-timing analysis of Cygnus X-1 with Insight-HXMT
- The high energy probability distribution of accretion disc luminosity fluctuations
- The origin of long soft lags and the nature of the hard-intermediate state in black hole binaries
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- Variable QPO lags and reduced coherence between the disc and corona in MAXI J1820+070
- Detection of a Type-C QPO during the soft-to-hard transition in Swift J1727.8-1613
- Accretion Geometry of Black Hole X-ray Binaries: Insights from X-ray Observations
- Unprecedentedly bright X-ray flaring in Cygnus X-1 observed by INTEGRAL