Black hole spin of Cyg X-1 determined from the softest state ever observed
arXiv:1701.05758 · doi:10.1093/pasj/psx009
Abstract
We show the softest ever spectrum from Cyg~X-1, detected in 2013 with Suzaku. This has the weakest high energy Compton tail ever seen from this object, so should give the cleanest view of the underlying disk spectrum, and hence the best determination of black hole spin from disk continuum fitting. Using the standard model of a disk with simple non-thermal Comptonisation to produce the weak high energy tail gives a high spin black hole. However, we get a significantly better fit by including an additional, low temperature thermal Comptonisation component, which allows a much lower black hole spin. Corroboration of the existence of an additional Compton component comes from the frequency dependent hard lags seen in the rapid variability in archival high/soft state data. These can not be explained if the continuum is a single non-thermal Comptonisation component, but are instead consistent with a radially stratified, multi zone Comptonisation spectrum, where the spectrum is softer further from the black hole. A complex multi-zone Comptonisation continuum is required to explain both spectra and timing together, and this has an impact on the derived black hole spin.
15 pages, 5 figures
References in corpus (7)
- X-ray Properties of Black-Hole Binaries
- Modelling the behaviour of accretion flows in X-ray binaries
- The role of the reflection fraction in constraining black hole spin
- Analysing the atolls: X-ray spectral transitions of accreting neutron stars
- Re-condensation from an ADAF into an inner disk - the intermediate state of black hole accretion?
- Modelling the cross-spectral variability of the black hole binary MAXI J1659-152 with propagating accretion rate fluctuations
- Magnetic flux stabilizing thin accretion disks
Cited by in corpus (16)
- An alternative interpretation of GW190412 as a binary black hole merger with a rapidly spinning secondary
- Re-estimating the Spin Parameter of the Black Hole in Cygnus X-1
- Wind mass-loss rates of stripped stars inferred from Cygnus X-1
- Magnetically Arrested Disks in Quiescent Black-Hole Binaries: Formation Scenario, Observable Signatures, and Potential PeVatrons
- Observational prospects of self-interacting scalar superradiance with next-generation gravitational-wave detectors
- AstroSat and MAXI view of Cygnus X-1: Signature of an `extreme' soft nature
- Rapid population synthesis of black-hole high-mass X-ray binaries: implications for binary stellar evolution
- Common origin for black holes in both high mass X-ray binaries and gravitational-wave sources
- Evidence for a black hole spin--orbit misalignment in the X-ray binary Cyg X-1
- Do stellar-mass and super-massive black holes have similar dining habits?
- XRB continuum fitting with sensitive high energy X-ray detectors
- Detection of a low frequency quasi-periodic oscillation in the soft state of Cygnus X-1 with Insight-HXMT
- Distinct accretion modes of Cygnus X-1 revealed from hard X-rays
- Clumpy wind accretion in Cygnus X-1
- Searching for quantum-gravity footprint around stellar-mass black holes
- Conditions for accretion disc formation and observability of wind-accreting X-ray binaries