Evolution of Primordial Magnetic Fields during Large-scale Structure Formation

Author:

Mtchedlidze SalomeORCID,Domínguez-Fernández PaolaORCID,Du XiaolongORCID,Brandenburg AxelORCID,Kahniashvili TinaORCID,O’Sullivan ShaneORCID,Schmidt WolframORCID,Brüggen MarcusORCID

Abstract

Abstract Primordial magnetic fields (PMFs) could explain the large-scale magnetic fields present in the universe. Inflation and phase transitions in the early universe could give rise to such fields with unique characteristics. We investigate the magnetohydrodynamic evolution of these magnetogenesis scenarios with cosmological simulations. We evolve inflation-generated magnetic fields either as (i) uniform (homogeneous) or as (ii) scale-invariant stochastic fields, and phase-transition-generated ones either as (iii) helical or as (iv) nonhelical fields from the radiation-dominated epoch. We find that the final distribution of magnetic fields in the simulated cosmic web shows a dependence on the initial strength and the topology of the seed field. Thus, the observed field configuration retains information on the initial conditions at the moment of the field generation. If detected, PMF observations would open a new window for indirect probes of the early universe. The differences between the competing models are revealed on the scale of galaxy clusters, bridges, as well as filaments and voids. The distinctive spectral evolution of different seed fields produces imprints on the correlation length today. We discuss how the differences between rotation measures from highly ionized regions can potentially be probed with forthcoming surveys.

Funder

Shota Rustaveli National Science Foundation of Georgia

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 13 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Dark Matter Minihalos from Primordial Magnetic Fields;Physical Review Letters;2023-12-08

2. Cosmic-void observations reconciled with primordial magnetogenesis;Nature Communications;2023-11-18

3. Bianchi cosmologies, magnetic fields, and singularities;Physical Review D;2023-10-27

4. Galactic Dynamos;Annual Review of Astronomy and Astrophysics;2023-08-18

5. Reconciling the magnetic field in central disc galaxies with the dynamical mass using the cosmological simulations;Monthly Notices of the Royal Astronomical Society;2023-07-26

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