The Effect of Cosmic Magnetic Fields on the Metagalactic Ionization Background inferred from the Lyman-α Forest
arXiv:1311.1504 · doi:10.1093/mnras/stt2169
Abstract
The sources which reionized the Intergalactic Medium by redshift ~6 are still unknown. A severe constraint on the ionization process is the low emissivity required to maintain the ionization in the Lyman-α forest. Simulation-calibrated observations suggest a production rate of at most only a few photons per baryon. In this work, we present a new solution to this "photon-starvation" problem using a weak background of cosmic magnetic fields, which may be present as a consequence of early-Universe physics and subsequent magneto-hydrodynamical amplification. If present, such magnetic fields can induce density perturbations which are dominant on scales comparable to those probed by measurements of hydrogen-absorption lines at redshifts z~2-5. We show that a sub-nanoGauss magnetic field, coherent on scale ~1 Mpc with an almost scale-invariant spectrum, is sufficient to produce significant impact on the effective optical depth, the appearance of the Lyman-α forest on quasar spectra, the pixel-flux statistics and the power spectrum of transmitted flux. We also show that such magnetic-field signatures are effectively erased when the metagalactic photoionization rate is increased, hence relaxing the constraint on the cosmic photon budget available for reionization.
8 pages. Accepted by MNRAS
References in corpus (10)
- Nine-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Parameter Results
- Cosmological Magnetic Fields: Their Generation, Evolution and Observation
- Observational constraints on Cosmic Reionization
- The observed ionization rate of the intergalactic medium and the ionizing emissivity at z >5: Evidence for a photon starved and extended epoch of reionization
- A Direct Precision Measurement of the Intergalactic Lyman-alpha Opacity at 2<z<4.2
- An improved measurement of the flux distribution of the Ly-alpha forest in QSO absorption spectra: the effect of continuum fitting, metal contamination and noise properties
- Faraday Rotation Limits on a Primordial Magnetic Field from WMAP Five-Year Data
- The Search for a Primordial Magnetic Field
- The influence of magnetic fields on the thermodynamics of primordial star formation
- Faraday rotation, stochastic magnetic fields and CMB maps
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- Introducing SPHINX-MHD: The Impact of Primordial Magnetic Fields on the First Galaxies, Reionization, and the Global 21cm Signal
- Measurement of the small-scale structure of the intergalactic medium using close quasar pairs
- Gas around galaxy haloes - II: hydrogen absorption signatures from the environments of galaxies at redshifts 2 < z < 3
- The influence of metagalactic ultra-violet background fluctuations on the high-redshift Ly forest
- Dark Matter Minihalos from Primordial Magnetic Fields
- Gas around galaxy haloes - III: hydrogen absorption signatures around galaxies and QSOs in the Sherwood simulation suite
- Primordial magnetic fields: consistent initial conditions and impact on high-z structures
- A Holographic Bound on Cosmic Magnetic Fields
- Constraints on Primordial Magnetic Fields from the Lyman-α forest
- Matter power spectrum induced by primordial magnetic fields: from the linear to the non-linear regime
- Magnetic Fields from Compensated Isocurvature Perturbations
- Can WIMPs Survive the Legacy of a Magnetised Early Universe?
- Implications of baryon-dark matter interaction on IGM temperature and tSZ effect with magnetic field