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arxiv: 1410.0368 · v2 · submitted 2014-10-01 · 🌌 astro-ph.CO

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Reionization constraints on primordial magnetic fields

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classification 🌌 astro-ph.CO
keywords magneticreionizationfieldfieldsprimordialrangeanalysisconstraints
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We study the impact of the extra density fluctuations induced by primordial magnetic fields on the reionization history in the redshift range: $6 < z < 10$. We perform a comprehensive MCMC physical analysis allowing the variation of parameters related to primordial magnetic fields (strength, $B_0$, and power-spectrum index $n_{\scriptscriptstyle \rm B}$), reionization, and $\Lambda$CDM cosmological model. We find that magnetic field strengths in the range: $B_0 \simeq 0.05{-}0.3$ nG (for nearly scale-free power spectra) can significantly alter the reionization history in the above redshift range and can relieve the tension between the WMAP and quasar absorption spectra data. Our analysis puts upper-limits on the magnetic field strength $B_0 < 0.358, 0.120, 0.059$ nG (95 % c.l.) for $n_{\scriptscriptstyle \rm B} = -2.95, -2.9, -2.85$, respectively. These represent the strongest magnetic field constraints among those available from other cosmological observables.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Primordial Magnetic Fields at Cosmic Dawn: 21-cm Forecasts with HERA and SKA

    astro-ph.CO 2026-05 unverdicted novelty 5.0

    Primordial magnetic fields enhance low-mass halo abundance at Cosmic Dawn, advancing Lyman-alpha coupling, X-ray heating and reionization and imprinting detectable signatures on global and fluctuating 21-cm signals ob...

  2. Primordial magnetic fields in the light of upcoming post-EoR Lyman-$\alpha$ and 21-cm observations

    astro-ph.CO 2026-04 unverdicted novelty 4.0

    Forecasts show DESI-like and SKA1-Mid observations could constrain primordial magnetic field amplitude and spectral index to roughly 10% precision via 21cm auto-spectrum and Lyα-21cm cross-spectrum.