Journal
JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS
Volume -, Issue 11, Pages -Publisher
IOP PUBLISHING LTD
DOI: 10.1088/1475-7516/2009/11/021
Keywords
Magnetohydrodynamics; intergalactic media; cosmic magnetic fields theory
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The implication of primordial magnetic-field-induced structure formation for the HI signal from the epoch of reionization is studied. Using semi-analytic models, we compute both the density and ionization inhomogeneities in this scenario. We show that : (a) T h e global HI signal can only be seen in emission, unlike in the standard Lambda CDM models, (b) the density perturbations induced by primordial fields, leave distinctive signatures of the magnetic field Jeans' length on the HI two-point correlation function, (c) the length scale of ionization in homogeneities is less than or similar to 1 Mpc. We find that the peak expected signal (two-point correlation function) is similar or equal to 10(-4) K-2 in the range of scales 0.5-3 Mpc for magnetic field strength in the range 5 x 10(-10)-3 x 10(-9) G. We also discuss the detectability of the HI signal. The angular resolution of the on-going and planned radio interferometers allows one to probe only the largest magnetic field strengths that we consider. They have the sensitivity to detect the magnetic field-induced features. We show that the future SKA has both the angular resolution and the sensitivity to detect the magnetic field-induced signal in the entire range of magnetic field values we consider, in and integration time of one week.
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