Non-thermal radio emission from O-type stars. IV. Cyg OB2 No. 8A
arXiv:1006.3540 · doi:10.1051/0004-6361/200913450
Abstract
We study the non-thermal radio emission of the binary Cyg OB2 No. 8A, to see if it is variable and if that variability is locked to the orbital phase. We investigate if the synchrotron emission generated in the colliding-wind region of this binary can explain the observations and we verify that our proposed model is compatible with the X-ray data. We use both new and archive radio data from the Very Large Array (VLA) to construct a light curve as a function of orbital phase. We also present new X-ray data that allow us to improve the X-ray light curve. We develop a numerical model for the colliding-wind region and the synchrotron emission it generates. The model also includes free-free absorption and emission due to the stellar winds of both stars. In this way we construct artificial radio light curves and compare them with the observed one. The observed radio fluxes show phase-locked variability. Our model can explain this variability because the synchrotron emitting region is not completely hidden by the free-free absorption. In order to obtain a better agreement for the phases of minimum and maximum flux we need to use stellar wind parameters for the binary components which are somewhat different from typical values for single stars. We verify that the change in stellar parameters does not influence the interpretation of the X-ray light curve. Our model has trouble explaining the observed radio spectral index. This could indicate the presence of clumping or porosity in the stellar wind, which - through its influence on both the Razin effect and the free-free absorption - can considerably influence the spectral index. Non-thermal radio emitters could therefore open a valuable pathway to investigate the difficult issue of clumping in stellar winds.
19 pages, 10 figures, accepted by A&A
References in corpus (12)
- Mass loss from hot massive stars
- Bright OB stars in the Galaxy - III. Constraints on the radial stratification of the clumping factor in hot star winds from a combined Halpha, IR and radio analysis
- The Effect of Porosity on X-ray Emission Line Profiles from Hot-Star Winds
- Radio, X-ray, and gamma-ray Emission Models of the Colliding Winds Binary WR 140
- Non-thermal emission processes in massive binaries
- A 3D dynamical model of the colliding winds in binary systems
- A Clumping Independent Diagnostic of Stellar Mass-loss Rates: Rapid Clump Destruction in Adiabatic Colliding Winds
- Magnetic field measurements and wind-line variability of OB-type stars
- Can single O stars produce non-thermal radio emission?
- Non-thermal radio emission from O-type stars. II. HD 167971
- Non-thermal radio emission from single hot stars
- Non-thermal radio emission from O-type stars III. Is Cyg OB2 No. 9 a wind-colliding binary?
Cited by in corpus (24)
- Catalogue of particle-accelerating colliding-wind binaries
- MOBSTER -- VI. The crucial influence of rotation on the radio magnetospheres of hot stars
- Magnetic fields in massive stars, their winds, and their nebulae
- X-ray emission from massive stars in Cyg OB2
- 9 Sgr: uncovering an O-type spectroscopic binary with an 8.6 year period
- The 2.35 year itch of Cyg OB2 #9 - I. Optical and X-ray monitoring
- Multi-Epoch VLBA Observations of the Compact Wind-Collision Region in the Quadruple System Cyg OB2 #5
- Wind collisions in three massive stars of Cyg OB2
- An investigation into the fraction of particle accelerators among colliding-wind binaries. Towards an extension of the catalogue
- A multi-epoch XMM-Newton campaign on the core of the massive Cyg OB2 association
- The non-thermal, time-variable radio emission from Cyg OB2 # 5: A wind-collision region
- The 2.35 year itch of Cyg OB2 #9. II. Radio monitoring
- e-MERLIN 21cm constraints on the mass-loss rates of OB stars in Cyg OB2
- The long period eccentric orbit of the particle accelerator HD167971 revealed by long baseline interferometry
- AU-scale radio imaging of the wind collision region in the brightest and most luminous non-thermal colliding wind binary Apep
- The 2.35 year itch of Cygnus OB2#9 III. X-ray and radio emission analysis based on three dimensional hydrodynamical modelling
- High-resolution Very Large Array observations of 18 MIPSGAL bubbles
- Non-thermal radio emission from O-type stars. V. 9 Sgr
- Hints about the multiplicity of WR 133 based on multiepoch radio observations
- Variable millimetre radiation from the colliding-wind binary Cyg OB2 #8A
- Search for non-thermal X-ray emission in the colliding wind binary Cyg OB2 #8A
- Interacting winds in massive binaries
- COBRaS: The e-MERLIN 21 cm Legacy survey of Cygnus OB2
- Non-thermal radio emission from colliding-wind binaries: modelling Cyg OB2 No. 8A and No. 9