Reionization by Hard Photons: I. X-rays from the First Star Clusters
arXiv:astro-ph/0005262 · doi:10.1086/320957
Abstract
Observations of the Ly-alpha forest at z~3 reveal an average metallicity Z~0.01 Z_solar. The high-redshift supernovae that polluted the IGM also accelerated relativistic electrons. Since the energy density of the CMB scales as (1+z)^4, at high redshift these electrons cool via inverse Compton scattering. Thus, the first star clusters emit X-rays. Unlike stellar UV ionizing photons, these X-rays can escape easily from their host galaxies. This has a number of important physical consequences: (i) Due to their large mean free path, these X-rays can quickly establish a universal ionizing background and partially reionize the universe in a gradual, homogeneous fashion. If X-rays formed the dominant ionizing background, the universe would have more closely resembled a single-phase medium, rather than a two-phase medium. (ii) X-rays can reheat the universe to higher temperatures than possible with UV radiation. (iii) X-rays counter the tendency of UV radiation to photo-dissociate H2, an important coolant in the early universe, by promoting gas phase H2 formation. The X-ray production efficiency is calibrated to local observations of starburst galaxies, which imply that ~10% of the supernova energy is converted to X-rays. While direct detection of sources in X-ray emission is difficult, the presence of relativistic electrons at high redshift and thus a minimal level of X-ray emission may be inferred by synchrotron emission observations with the Square Kilometer Array. These sources may constitute a significant fraction of the unresolved hard X-ray background, and can account for both the shape and amplitude of the gamma-ray background. This paper discusses the existence and observability of high-redshift X-ray sources, while a companion paper models the detailed reionization physics and chemistry.
Final version accepted by ApJ. 32 pages, 3 figures
References in corpus (23)
- Resolving the extragalactic hard X-ray background
- Lyman Continuum Emission from Galaxies at z~3.4
- The Radiative Feedback of the First Cosmological Objects
- Cosmological Reionization by Stellar Sources
- The Discovery of a Luminous z=5.80 Quasar from the Sloan Digital Sky Survey
- Zero-Metallicity Stars and the Effects of the First Stars on Reionization
- Cosmic Chemical Evolution
- The Evolution of the Effective Equation of State of the IGM
- Gamma-Ray Background from Structure Formation in the Intergalactic Medium
- The Enrichment History of the Intergalactic Medium: Measuring the CIV/HI Ratio in the Lyman Alpha Forest
- X-Rays from NGC 3256: High-Energy Emission in Starburst Galaxies and Their Contribution to the Cosmic X-Ray Background
- Nonthermal Emission from a Supernova Remnant in a Molecular Cloud
- Nonlinear Shock Acceleration and Photon Emission in Supernova Remnants
- The Scatter in the Relationship between Redshift and the Radio-to-Submm Spectral Index
- Mixing Metals in the Early Universe
- Dust-obscured star formation and AGN fuelling in hierarchical models of galaxy evolution
- Escape of Ionizing Radiation from High-Redshift Galaxies
- New CMB constraints on the cosmic matter budget: trouble for nucleosynthesis?
- Probing the First Stars with Hydrogen and Helium Recombination Emission
- The detection of oxygen in the low-density intergalactic medium
- Observational Signatures of the First Luminous Objects
- Will relativistic heavy-ion colliders destroy our planet?
- Stellar contributors to the hard X-ray background?
Cited by in corpus (151)
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Determination of Cosmological Parameters
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- 21-cm cosmology
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- Wilkinson Microwave Anisotropy Probe (WMAP) First Year Observations: TE Polarization
- Observational constraints on Cosmic Reionization
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
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- Cosmological Parameter Estimation Using 21 cm Radiation from the Epoch of Reionization
- Second-Generation Objects in the Universe: Radiative Cooling and Collapse of Halos with Virial Temperatures Above 10^4 Kelvin
- The First Cosmic Structures and their Effects
- The Evolution of the Intergalactic Medium
- Radiation Backgrounds at Cosmic Dawn: X-Rays from Compact Binaries
- The Universe Was Reionized Twice
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- Early reionization by miniquasars
- 21 cm fluctuations from inhomogeneous X-ray heating before reionization
- The Spin-Kinetic Temperature Coupling and the Heating Rate due to Lyman Alpha Scattering before Reionization: Predictions for 21cm Emission and Absorption
- Keeping the Universe ionised: Photo-heating and the clumping factor of the high-redshift intergalactic medium
- Evolution of the Intergalactic Opacity: Implications for the Ionizing Background, Cosmic Star Formation, and Quasar Activity
- X-ray Preionisation Powered by Accretion on the First Black Holes. I: a Model for the WMAP Polarisation Measurement
- The Thermal Memory of Reionization History
- Statistical Probes of Reionization With 21 cm Tomography
- The observable signature of late heating of the Universe during cosmic reionization
- Charting the Parameter Space of the Global 21-cm Signal
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- Inhomogeneous recombinations during cosmic reionization
- Feedback from Galaxy Formation: Production and Photodissociation of Primordial Molecular Hydrogen
- Heating and Ionization of the Intergalactic Medium by an Early X-Ray Background
- What does the first highly-redshifted 21-cm detection tell us about early galaxies?
- The Impact of The IGM on High-Redshift Lyman Alpha Emission Lines
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- The Fate of the First Galaxies. I. Self-Consistent Cosmological Simulations with Radiative Transfer
- The Kinetic Sunyaev-Zel'dovich Effect from Reionization
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- The Fate of the First Galaxies. III. Properties of Primordial Dwarf Galaxies and their Impact on the Intergalactic Medium
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- Emulating the Global 21-cm Signal from Cosmic Dawn and Reionization
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- Constraining the redshifted 21-cm signal with the unresolved soft X-ray background
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- The Radio Scream from Black Holes at Cosmic Dawn: A Semi-Analytic Model for the Impact of Radio Loud Black-Holes on the 21 cm Global Signal
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- Separating out the Alcock-Paczynski Effect on 21cm Fluctuations
- The 21 Centimeter Forest
- Feedback from High-Mass X-Ray Binaries on the High Redshift Intergalactic Medium : Model Spectra
- Preheating of the Universe by cosmic rays from primordial supernovae at the beginning of cosmic reionization
- The 21-cm Line as a Probe of Reionization
- X-ray Twinkles and Pop III Stars
- Magnetic fields from reionisation
- The First Stars: formation under X-ray feedback
- Lyalpha versus X-ray heating in the high-z IGM
- Feedback from the IR Background in the Early Universe
- Probing Population III Stars in Galaxy IOK-1 at z = 6.96 through He II Emission
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- X-ray Background at High Redshifts from Pop III Remnants: Results from Pop III star formation rates in the Renaissance Simulations
- A smoother end to the dark ages
- Particle decay in the early universe: predictions for 21 cm
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- An X-Ray Detection Possibility of Star-Formation-Bursting Proto-Elliptical Galaxies