Effects of simulated cosmological magnetic fields on the galaxy population
arXiv:1508.06631 · doi:10.1093/mnrasl/slv176
Abstract
We investigate the effects of varying the intensity of the primordial magnetic seed field on the global properties of the galaxy population in ideal magnetohydrodynamic cosmological simulations performed with the moving-mesh code AREPO. We vary the seed field in our calculations in a range of values still compatible with the current cosmological upper limits. We show that above a critical intensity of , the additional pressure arising from the field strongly affects the evolution of gaseous structures, leading to a suppression of the cosmic star formation history, \rev{which is stronger for larger seed fields. This directly reflects into a lower total galaxy count above a fixed stellar mass threshold at all redshifts, and} a lower galaxy number density at fixed stellar mass and a less massive stellar component at fixed virial mass at all mass scales. These signatures may be used, in addition to the existing methods, to derive tighter constraints on primordial magnetic seed field intensities.
5 pages, 2 figures. Accepted for publication in MNRAS. Moderate edits to match the published version
References in corpus (7)
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- Global galactic dynamo driven by cosmic-rays and exploding magnetized stars
- The large-scale properties of simulated cosmological magnetic fields
- Primordial magnetic field limits from cosmological data
- Faraday Rotation Limits on a Primordial Magnetic Field from WMAP Five-Year Data
- Effect of Primordial Magnetic Field on Seeds for Large Scale Structure
Cited by in corpus (41)
- First results from the IllustrisTNG simulations: radio haloes and magnetic fields
- Magnetic field formation in the Milky Way-like disk galaxies of the Auriga project
- Resolved magnetic dynamo action in the simulated intracluster medium
- The effect of magnetic fields on properties of the circumgalactic medium
- Magnetising the circumgalactic medium of disk galaxies
- Aurigaia: mock Gaia DR2 stellar catalogues from the Auriga cosmological simulations
- A three-phase amplification of the cosmic magnetic field in galaxies
- Introducing SPHINX-MHD: The Impact of Primordial Magnetic Fields on the First Galaxies, Reionization, and the Global 21cm Signal
- How primordial magnetic fields shrink galaxies
- A moving mesh unstaggered constrained transport scheme for magnetohydrodynamics
- Magnetogenesis around the first galaxies: the impact of different field seeding processes on galaxy formation
- Evolution of cosmic filaments and of their galaxy population from MHD cosmological simulations
- A survey of the thermal and non-thermal properties of cosmic filaments
- FLRW cosmological models with quark and strange quark matters in f(R,T) gravity
- Unraveling the origin of magnetic fields in galaxies
- Insight into primordial magnetic fields from 21-cm line observation with EDGES experiment
- The impact of magnetic fields on cosmological galaxy mergers. I: Reshaping gas and stellar discs
- SPICE: the connection between cosmic reionisation and stellar feedback in the first galaxies
- On the small scale turbulent dynamo in the intracluster medium: A comparison to dynamo theory
- Scalar fields in Bonnor-Melvin Universe with potential: A study of dynamics of spin-0 particles-antiparticles
- Cosmological Magnetogenesis: The Biermann Battery during the Epoch of Reionization
- How Cosmic Rays Mediate the Evolution of the Interstellar Medium
- Non-ideal magnetohydrodynamics on a moving mesh
- Magnetogenesis at Cosmic Dawn: Tracing the Origins of Cosmic Magnetic Fields
- Global enhancement and structure formation of the magnetic field in spiral galaxies
- Primordial magnetic fields: consistent initial conditions and impact on high-z structures
- Primordial magnetic fields during the cosmic dawn in light of EDGES 21-cm signal
- Stellar populations and origin of thick disks in AURIGA simulations
- The impact of magnetic fields on cosmological galaxy mergers -- II. Modified angular momentum transport and feedback
- Probing the primordial Universe with 21-cm line from cosmic dawn/epoch of reionization
- An upper limit on primordial magnetic fields from ultra-faint dwarf galaxies
- Magnetizing the Cosmic Web during Reionization
- Cosmological magnetic braking and the formation of high-redshift, super-massive black holes
- The THESAN-ZOOM project: Star-formation efficiencies in high-redshift galaxies
- Small-scale CMB anisotropies induced by the primordial magnetic fields
- The THESAN-ZOOM project: Star formation efficiency from giant molecular clouds to galactic scale in high-redshift starbursts
- Magnetic dynamos in galaxy clusters: the crucial role of galaxy formation physics at high redshifts
- Magnetic braking during direct collapse black hole formation
- Reconciling the magnetic field in central disc galaxies with the dynamical mass using the cosmological simulations
- Bayesian approach to equipartition estimation of magnetic field strength
- Towards convergence of turbulent dynamo amplification in cosmological simulations of galaxies