Cosmological Magnetogenesis: The Biermann Battery during the Epoch of Reionization
arXiv:2102.09535 · doi:10.1093/mnras/stab1030
Abstract
We investigate the effect of the Biermann battery during the Epoch of Reionization (EoR) using cosmological Adaptive Mesh Refinement simulations within the framework of the SPHINX project. We develop a novel numerical technique to solve for the Biermann battery term in the Constrained Transport method, preserving both the zero divergence of the magnetic field and the absence of Biermann battery for isothermal flows. The structure-preserving nature of our numerical method turns out to be very important to minimise numerical errors during validation tests of the propagation of a Strömgren sphere and of a Sedov blast wave. We then use this new method to model the evolution of a 2.5 and 5 co-moving Mpc cosmological box with a state-of-the-art galaxy formation model within the RAMSES code. Contrary to previous findings, we show that three different Biermann battery channels emerge: the first one is associated with linear perturbations before the EoR, the second one is the classical Biermann battery associated with reionization fronts during the EoR, and the third one is associated with strong, supernova-driven outflows. While the two former channels generate spontaneously volume-filling magnetic fields with a strength on the order or below G, the latter, owing to the higher plasma temperature and a marginally-resolved turbulent dynamo, reaches a field strength as high as G in the intergalactic medium around massive haloes.
14 pages, 18 figures, accepted in MNRAS
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- Extragalactic magnetic field constraints from ultra-high-energy cosmic rays from local galaxies
- Non-ideal magnetohydrodynamic simulations of the first star formation: the effect of ambipolar diffusion
- A Subgrid Turbulent Mean Field Dynamo Model for Cosmological Galaxy Formation Simulations
- The impact of magnetic fields on cosmological galaxy mergers -- II. Modified angular momentum transport and feedback
- A kiloparsec-scale ordered magnetic field in a galaxy at z=5.6
- Magnetic dynamos in galaxy clusters: the crucial role of galaxy formation physics at high redshifts
- Simulated Rotation Measure Sky from Primordial Magnetic Fields
- Towards convergence of turbulent dynamo amplification in cosmological simulations of galaxies
- Kinematic dynamos and resolution limits for Smoothed Particle Magnetohydrodynamics
- Turbulent Magnetic Dynamos with Halo Lags, Winds, and Jets