Measuring Molecular, Neutral Atomic, and Warm Ionized Galactic Gas Through X-Ray Absorption
arXiv:astro-ph/9806385 · doi:10.1086/306616
Abstract
We study the column densities of neutral atomic, molecular, and warm ionized Galactic gas through their continuous absorption of extragalactic X-ray spectra at |b| > 25 degrees. For N(H,21cm) < 5x10^20 cm^-2 there is an extremely tight relationship between N(H,21cm) and the X-ray absorption column, N(xray), with a mean ratio along 26 lines of sight of N(xray)/N(H,21cm) = 0.972 +- 0.022. This is significantly less than the anticpated ratio of 1.23, which would occur if He were half He I and half He II in the warm ionized component. We suggest that the ionized component out of the plane is highly ionized, with He being mainly He II and He III. In the limiting case that H is entirely HI, we place an upper limit on the He abundance in the ISM of He/H <= 0.103. At column densities N(xray) > 5x10^20 cm^-2, which occurs at our lower latitudes, the X-ray absorption column N(xray) is nearly double N(H,21cm). This excess column cannot be due to the warm ionized component, even if He were entirely He I, so it must be due to a molecular component. This result implies that for lines of sight out of the plane with |b| ~ 30 degrees, molecular gas is common and with a column density comprable to N(H,21cm). This work bears upon the far infrared background, since a warm ionized component, anticorrelated with N(H,21cm), might produce such a background. Not only is such an anticorrelation absent, but if the dust is destroyed in the warm ionized gas, the far infrared background may be slightly larger than that deduced by Puget et al. (1996).
1 AASTeX file, 14 PostScript figure files which are linked within the TeX file
References in corpus (3)
Cited by in corpus (32)
- On the Absorption of X-rays in the Interstellar Medium
- Molecular Cloud Formation Behind Shock Waves
- The population of X-ray supernova remnants in the Large Magellanic Cloud
- The Correlation between Dispersion Measure and X-ray Column Density from Radio Pulsars
- An XMM-Newton view of the cluster of galaxies Abell 85
- X-Rays from Superbubbles in the Large Magellanic Cloud. VI. A Sample of Thirteen Superbubbles
- The X-ray Line Emission from the Supernova Remnant W49B
- The XMM Cluster Survey: X-ray analysis methodology
- Thermal and Non-thermal X-Rays from the LMC Super Bubble 30 Dor C
- Radial Temperature Profiles of X-Ray--Emitting Gas Within Clusters of Galaxies
- Multi-wavelength Observations of the Radio Magnetar PSR J1622-4950 and Discovery of its Possibly Associated Supernova Remnant
- A Method for Deriving Accurate Gas-Phase Abundances for the Multiphase Interstellar Galactic Halo
- An XMM-Newton Observation of the Local Bubble Using a Shadowing Filament in the Southern Galactic Hemisphere
- Photoionization of Galactic Halo Gas by Old Supernova Remnants
- On the Extreme Ultraviolet Emission from Galaxy Clusters
- Oxygen Abundances in the Milky Way Using X-ray Absorption Measurements Towards Galaxy Clusters
- XMM-Newton Observations of NGC 507: Super-solar Metal Abundances in the Hot ISM
- GRB 070311: a direct link between the prompt emission and the afterglow
- Large Scale Diffuse X-ray Emission from the Large Magellanic Cloud
- X-ray Tail in NGC 7619
- Limits on the X-ray and optical luminosity of the progenitor of the type Ia supernova SN2007sr
- The circumburst environment of a FRED GRB: study of the prompt emission and X-ray/optical afterglow of GRB 051111
- The Swift X-ray Telescope Cluster Survey: data reduction and cluster catalog for the GRB fields
- An X-ray Investigation of Three Supernova Remnants in the Large Magellanic Cloud
- AGN in the XMM-Newton first-light image as probes for the interstellar medium in the LMC
- The warm absorber in the radio-loud quasar 4C +74.26
- Multiwavelength analysis of the X-ray spur and southeast of the Large Magellanic Cloud
- Ionized Gas in the First 10 Kiloparsecs of the Interstellar Galactic Halo: Metal Ion Fractions
- X-ray Properties of the Abell 644 Cluster of Galaxies
- On the Internal Absorption of Galaxy Clusters
- Small-Scale structure in the Galactic ISM: Implications for Galaxy Cluster Studies
- Maximum Entropy Reconstruction of the Interstellar Medium: I. Theory