Modification of the 21-cm power spectrum by X-rays during the epoch of reionisation
arXiv:0809.1954 · doi:10.1111/j.1365-2966.2009.14781.x
Abstract
We incorporate a contribution to reionization from X-rays within analytic and semi-numerical simulations of the 21-cm signal arising from neutral hydrogen during the epoch of reionization. We explore the impact that X-ray ionizations have on the power spectrum (PS) of 21-cm fluctuations by varying both the average X-ray MFP and the fractional contribution of X-rays to reionization. In general, prior to the epoch when the intergalactic medium is dominated by ionized regions (H {\sevensize II} regions), X-ray-induced ionization enhances fluctuations on spatial scales smaller than the X-ray MFP, provided that X-ray heating does not strongly supress galaxy formation. Conversely, at later times when \H2 regions dominate, small-scale fluctuations in the 21-cm signal are suppressed by X-ray ionization. Our modelling also shows that the modification of the 21-cm signal due to the presence of X-rays is sensitive to the relative scales of the X-ray MFP, and the characteristic size of \H2 regions. We therefore find that X-rays imprint an epoch and scale-dependent signature on the 21-cm PS, whose prominence depends on fractional X-ray contribution. The degree of X-ray heating of the IGM also determines the extent to which these features can be discerned. We show that the MWA will have sufficient sensitivity to detect this modification of the PS, so long as the X-ray photon MFP falls within the range of scales over which the array is most sensitive ( Mpc). In cases in which this MFP takes a much smaller value, an array with larger collecting area would be required.
15 pages, 6 figures, Accepted for publication in MNRAS X-ray heating contribution now added
References in corpus (27)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- Constraining the Evolution of the Ionizing Background and the Epoch of Reionization with z ~ 6 Quasars II: A Sample of 19 Quasars
- Cosmological Parameter Estimation Using 21 cm Radiation from the Epoch of Reionization
- Efficient Simulations of Early Structure Formation and Reionization
- Clustering of High Redshift () Quasars from the Sloan Digital Sky Survey
- Simulating Cosmic Reionization at Large Scales I: the Geometry of Reionization
- The morphology of HII regions during reionization
- Simulations and Analytic Calculations of Bubble Growth During Hydrogen Reionization
- The Global 21 Centimeter Background from High Redshifts
- 21 cm fluctuations from inhomogeneous X-ray heating before reionization
- Inside-out or Outside-in: The topology of reionization in the photon-starved regime suggested by Lyman-alpha forest data
- Detecting the Rise and Fall of 21 cm Fluctuations with the Murchison Widefield Array
- Baryonic Acoustic Oscillations in 21cm Emission: A Probe of Dark Energy out to High Redshifts
- Cosmic Reionization and the 21-cm signal: Comparison between an analytical model and a simulation
- Cosmic Reionization Redux
- The Impact of a Percolating IGM on Redshifted 21 cm Observations of Quasar HII Regions
- Biased Reionisation and Non-Gaussianity in Redshifted 21cm Intensity Maps of the Reionisation Epoch
- Current models of the observable consequences of cosmic reionization and their detectability
- The correlation between the distribution of galaxies and 21cm emission at high redshifts
- Constraints on First-Light Ionizing Sources from Optical Depth of the Cosmic Microwave Background
- Constraining the Quasar Contribution to the Reionisation of Cosmic Hydrogen
- Studying the Sources of Cosmic Reionization with 21-cm Fluctuations
- On Correlated Random Walks and 21-cm Fluctuations During Cosmic Reionization
- Fossil Ionized Bubbles Around Dead Quasars During Reionization
- Properties of High Redshift Quasars-II: What does the quasar luminosity function tell us about super-massive black-hole evolution?
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- Reionization and Cosmology with 21 cm Fluctuations
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- Detecting the redshifted 21cm forest during reionization
- X-rays and hard UV radiation From the First Galaxies: Ionization Bubbles and 21 cm Observations
- Cornering Extended Starobinsky Inflation with CMB and SKA
- The VANDELS Survey: New constraints on the high-mass X-ray binary populations in normal star-forming galaxies at 3 < z < 5.5
- Gauging the Contribution of X-ray Sources to Reionization Through the Kinetic Sunyaev-Zel'dovich Effect
- Probing the Inflaton Potential with SKA