X-Ray Constraints on the Warm_hot Intergalactic Medium
arXiv:astro-ph/0011552 · doi:10.1086/319117
Abstract
Three observational constraints can be placed on a warm-hot intergalactic medium (WHIM) using \rosat PSPC pointed and survey data, the emission strength, the energy spectrum, and the fluctuation spectrum. The upper limit to the emission strength of the WHIM is 7.5 +/- 1.0 keV s^-1 cm^-2 sr^-1 keV^-1 in the 3/4 keV band, an unknown portion of which value may be due to our own Galactic halo. The spectral shape of the WHIM emission can be described as thermal emission with log T=6.42, although the true spectrum is more likely to come from a range of temperatures. The values of emission strength and spectral shape are in reasonable agreement with hydrodynamical cosmological models. The autocorrelation function in the 0.44 keV < E < 1.21 keV band range, w(theta), for the extragalactic soft X-ray background (SXRB) which includes both the WHIM and contributions due to point sources, is less than about 0.002 for 10 arcminutes < theta < 20 arcminutes in the 3/4 keV band. This value is lower than the Croft et al. (2000) cosmological model by a factor of about 5, but is still not inconsistent with cosmological models. It is also found that the normalization of the extragalactic power law component of the soft X-ray background spectrum must be 9.5 +/- 0.9 keV s^-1 cm^-2 sr^-1 keV^-1 to be consistent with the ROSAT All-Sky Survey.
5 pages, 2 figures, submitted to Astrophysical Journal Letters
Cited by in corpus (27)
- A Catalog of Galaxy Clusters Observed by XMM-Newton
- Absolute measurement of the unresolved cosmic X-ray background in the 0.5-8 keV band with Chandra
- The resolved fraction of the Cosmic X-ray Background
- The Evolution of the Intergalactic Medium
- The Search for the Missing Baryons at Low Redshift
- Constrained Simulations of the Real Universe: II. Observational Signatures of Intergalactic Gas in the Local Supercluster Region
- Chandra Spectra of the Soft X-ray Diffuse Background
- XMM-Newton confirmation of Soft X-ray excess emission in clusters of galaxies - the discovery of O VII emission from an extended warm baryonic component
- The Ionization and Metallicity of the Intervening O VI Absorber at z = 0.1212 in the Spectrum of H1821+643
- The cosmic X-ray background and the population of the most heavily obscured AGNs
- Observational evidence for gravitationally trapped massive axion(-like) particles
- Warm-hot intergalactic baryons revealed
- The Chandra Deep Field-North Survey: XVII. Evolution of magnetic activity in old late-type stars
- The Consequences of the Cosmic Star-Formation Rate: X-ray Number Counts
- Confirming the Detection of an Intergalactic X-ray Absorber Toward PKS 2155-304
- Evidence for the Missing Baryons in the Angular Correlation of the Diffuse X-ray Background
- Simulation of Soft X-ray Emission Lines from the Missing Baryons
- Warm-Hot Intergalactic Medium in the Sculptor Supercluster
- The BMW Detection Algorithm applied to the Chandra Deep Field south: deeper and deeper
- X-Ray Emission from the Warm Hot Intergalactic Medium
- The X-ray background from groups and clusters of galaxies
- Effect of the Metallicity on the X-ray Emission from the Warm-Hot Intergalactic Medium
- Warm-hot intergalactic medium contribution to baryonic matter
- Contribution of Unresolved Point Sources to the Diffuse X-ray Background below 1 keV
- ROSAT observations of the soft X-ray background and of the cluster soft excess emission in the Hercules supercluster
- X-ray and Sunyaev-Zeldovich properties of the WHIM
- Measurement of the Forward Shock Velocities of the Supernova Remnant N132D Based on the Thermal X-ray Emission