The Dust Scattering Halo of Cygnus X-3
arXiv:1311.5588 · doi:10.1093/mnras/stv1704
Abstract
Dust grains scatter X-ray light through small angles, producing a diffuse halo image around bright X-ray point sources situated behind a large amount of interstellar material. We present analytic solutions to the integral for the dust scattering intensity, which allow for a Bayesian analysis of the scattering halo around Cygnus X-3. Fitting the optically thin 4-6 keV halo surface brightness profile yields the dust grain size and spatial distribution. We assume a power law distribution of grain sizes () and fit for , the grain radius cut-off amax, and dust mass column. We find that a dust grain size distribution with amax um fits the halo profile relatively well, whether the dust is distributed uniformly along the line of sight or in clumps. We find that a model consisting of two dust screens, representative of foreground spiral arms, requires the foreground Perseus arm to contain 80\% of the total dust mass. The remaining 20\% of the dust, which may be associated with the outer spiral arm of the Milky Way, is located within 1 kpc of Cyg X-3. Regardless of which model was used, we found . We examine the energy resolved halos of Cyg X-3 from 1 - 6 keV and find that there is a sharp drop in scattering halo intensity when keV, which cannot be explained with multiple scattering effects. We hypothesize that this may be caused by large dust grains or material with unique dielectric properties, causing the scattering cross-section to depart from the Rayleigh-Gans approximation that is used most often in X-ray scattering studies. The foreground Cyg OB2 association, which contains several evolved stars with large extinction values, is a likely culprit for grains of unique size or composition.
Accepted for publication in MNRAS
References in corpus (15)
- emcee: The MCMC Hammer
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Trigonometric Parallaxes of High Mass Star Forming Regions: the Structure and Kinematics of the Milky Way
- Astrophysics Source Code Library
- Parallaxes and proper motions of interstellar masers toward the Cygnus X star-forming complex. I. Membership of the Cygnus X region
- The Massive Star Population of Cygnus OB2
- High-Resolution X-ray Spectroscopy of the Interstellar Medium II: Neon and Iron Absorption Edges
- Chandra X-ray spectroscopy of the focused wind in the Cygnus X-1 system. I. The non-dip spectrum in the low/hard state
- Disk Dominated States of 4U 1957+11: Chandra, XMM, and RXTE Observations of Ostensibly the Most Rapidly Spinning Galactic Black Hole
- Modeling the Infrared Interstellar Extinction
- The X-ray Halo of GX5-1
- X-ray Dust Scattering at Small Angles: The Complete Halo around GX13+1
- Scattering from dust in molecular clouds: Constraining the dust grain size distribution through near-infrared cloudshine and infrared coreshine
- Cygnus X-3's Little Friend
- Micron-sized forsterite grains in the pre-planetary nebula of IRAS 17150-3224 - Searching for clues on the mysterious evolution of massive AGB stars
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- The X-ray dust scattered rings of the black hole low mass binary V404 Cyg
- Si K Edge Structure and Variability in Galactic X-Ray Binaries
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- Ray-tracing simulations and spectral models of X-ray radiation in dusty media
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- Interstellar absorption and dust scattering
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