Suzaku Observations of the Prototype Wind-Blown Bubble NGC 6888
arXiv:1012.3917 · doi:10.1088/0004-637X/728/2/135
Abstract
We present an analysis of the Suzaku observations of the prototype wind-blown bubble NGC 6888 which is based both on use of standard spectral models and on a direct comparison of theoretical models with observations. The X-ray spectra of NGC 6888 are soft and most of the X-rays are in the (0.3 - 1.5 keV) energy range. But, hard X-rays (1.5 - 4.0 keV) are also detected (~10% of the observed flux). The corresponding spectral fits require a relatively cool plasma with kT < 0.5 keV but much hotter plasma with temperature kT > 2.0 keV is needed to match the observed hard X-ray emission. We find no appreciable temperature variations within the hot bubble in NGC 6888. The derived abundances (N, O, Ne) are consistent with those of the optical nebula. This indicates a common origin of the X-ray emitting gas and the outer cold shell: most of the X-ray plasma (having non-uniform spatial distribution: clumps) has flown into the hot bubble from the optical nebula. If the electron thermal conduction is efficient, this can naturally explain the relatively low plasma temperature of most of the X-ray emitting plasma. Alternatively, the hot bubble in NGC 6888 will be adiabatic and the cold clumps are heated up to X-ray temperatures likely by energy exchange between the heavy particles (hot ions diffusing into the cold clumps).
18 pages, 6 figures, accepted for publication in The Astrophysical Journal
References in corpus (1)
Cited by in corpus (16)
- Radiation-Hydrodynamic Models of the evolving Circumstellar Medium around Massive Stars
- Feedback by massive stars and the emergence of superbubbles II. X-ray properties
- X-ray emission from the Wolf-Rayet bubble S308
- WISE morphological study of Wolf-Rayet nebulae
- Ionization structure and chemical abundances of the Wolf-Rayet nebula NGC6888 with integral field spectroscopy
- Simulated X-ray Spectra From Ionized Wind-Blown Nebulae around Massive Stars
- X-ray emission from the Wolf-Rayet bubble NGC 6888. II. XMM-Newton EPIC observations
- On the diffuse X-ray emission from the Wolf-Rayet Bubble NGC 2359
- Absence of hot gas within the Wolft-Rayet Bubble around WR16
- X-ray Emission from the Wolf-Rayet Bubble NGC 6888. I. Chandra ACIS-S Observations
- Ionization-Gasdynamic Simulations of Wind-Blown Nebulae around Massive Stars
- A Consistent Spectral Model of WR 136 and its Associated Bubble NGC 6888
- Consequences of Magnetic Field Structure for Heat Transport in Magnetohydrodynamics
- X-rays from wind-blown bubbles: an XMM-Newton detection of NGC 2359
- X-rays from the colliding wind binary WR 146
- Hot bubbles of planetary nebulae with hydrogen-deficient winds. III. Formation and evolution in comparison with hydrogen-rich bubbles