0 v 2 1 2 Fe b 19 99 Compton Heating of the Intergalactic Medium by the Hard X – ray Background
نویسنده
چکیده
High–resolution hydrodynamics simulations of the Lyα forest in cold dark matter dominated cosmologies appear to predict line widths that are substantially narrower than those observed. Here we point out that Compton heating of the intergalactic gas by the hard X–ray background (XRB), an effect neglected in all previous investigations, may help to resolve this discrepancy. The rate of gain in thermal energy by Compton scattering will dominate over the energy input from hydrogen photoionization if the XRB energy density is ∼ 0.2x/〈ǫ〉 times higher than the energy density of the UV background at a given epoch, where x is the hydrogen neutral fraction in units of 10 and 〈ǫ〉 is the mean X–ray photon energy in units of mec. The numerical integration of the time–dependent rate equations shows that the intergalactic medium approaches a temperature of about 1.5× 10 K at z > 3 in popular models for the redshift evolution of the extragalactic background radiation. The importance of Compton heating can be tested experimentally by measuring the Lyα line–width distribution as a function of redshift, thus the Lyα forest may provide a useful probe of the evolution of the XRB at high redshifts. Subject headings: cosmology: theory – diffuse radiation – intergalactic medium – quasars: absorption lines – X–rays: general
منابع مشابه
ar X iv : a st ro - p h / 99 02 08 0 v 1 4 F eb 1 99 9 Compton Heating of the Intergalactic Medium by the Hard X – ray Background
High-resolution hydrodynamics simulations of the Lyα forest in cold dark matter dominated cosmologies appear to predict line widths that are substantially narrower than those observed. Here we point out that Compton heating of the intergalactic gas by the hard X–ray background (XRB), an effect neglected in all previous investigations, may resolve this discrepancy. The rate of gain in thermal en...
متن کاملar X iv : a st ro - p h / 99 02 08 0 v 3 1 5 M ar 1 99 9 Compton Heating of the Intergalactic Medium by the Hard X – ray Background
High–resolution hydrodynamics simulations of the Lyα forest in cold dark matter dominated cosmologies appear to predict line–widths that are substantially narrower than those observed. Here we point out that Compton heating of the intergalactic gas by the hard X–ray background (XRB), an effect neglected in all previous investigations, may help to resolve this discrepancy. The rate of gain in th...
متن کاملar X iv : a st ro - p h / 99 04 05 7 v 1 5 A pr 1 99 9 Evidence for Intergalactic Absorption in the TeV Gamma - Ray Spectrum of Mkn 501
The recent HEGRA observations of the blazar Mkn 501 show strong curvature in the very high energy γ-ray spectrum. Applying the γ-ray opacity derived from an empirically based model of the intergalactic infrared background radiation field (IIRF), to these observations, we find that the intrinsic spectrum of this source is consistent with a power-law: dNγ/dE ∝ E −α with α = 2.00 ± 0.03 over the r...
متن کاملar X iv : a st ro - p h / 00 02 25 5 v 1 1 1 Fe b 20 00 Multiwavelength observations of Mkn 501 during the 1997 high state
During the observation period 1997, the nearby Blazar Mkn 501 showed extremely strong emission and high variability. We examine multiwavelength aspects of this event using radio, optical, soft and hard X-ray and TeV data. We concentrate on the medium-timescale variability of the broadband spectra, averaged over weekly intervals. We confirm the previously found correlation between soft and hard ...
متن کاملHeating of the Hot Intergalactic Medium by Powerful Radio Galaxies and Associated High Energy Gamma-Ray Emission
There is increasing evidence that some heating mechanism in addition to gravitational shock heating has been important for the hot gas inside clusters and groups of galaxies, as indicated by their observed X-ray scaling properties. While supernovae are the most obvious candidate heating sources, a number of recent studies have suggested that they may be energetically insufficient. Here we consi...
متن کامل