Publication:

Dwarf galaxies as a probe of a primordially magnetized Universe

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LASTRO

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LASTRO

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IPHYS

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SB

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EPFL

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103317

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266112

cris.virtual.sciperId

288713

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10933

cris.virtual.unitManager

Kneib, Jean-Paul

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2fae44c9-a705-407c-9aca-678518112781

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5a339632-150f-4a1d-b70b-9a053b836091

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datacite.rights

openaccess

dc.contributor.author

Sanati, Mahsa

dc.contributor.author

Martin-Alvarez, Sergio

dc.contributor.author

Schober, Jennifer Waltraud

dc.contributor.author

Revaz, Yves

dc.contributor.author

Devriendt, Julien

dc.contributor.author

Slyz, Adrianne

dc.date.accessioned

2024-10-29T13:00:51Z

dc.date.available

2024-10-29T13:00:51Z

dc.date.created

2024-10-18

dc.date.issued

2024-10-01

dc.date.modified

2025-01-21T12:03:48.536960Z

dc.description.abstract

Aims. The true nature of primordial magnetic fields (PMFs) and their role in the formation of galaxies remains elusive. To shed light on these unknowns, we investigated their impact by varying two sets of properties: (i) accounting for the effect of PMFs on the initial matter power spectrum and (ii) accounting for their magneto-hydrodynamical effects on the formation of galaxies. By comparing both, we can determine the dominant agent in shaping galaxy evolution. Methods. We used the magneto-hydrodynamics code RAMSES to generate multiple new zoom-in simulations for eight different host halos of dwarf galaxies across a wide luminosity range of 103-106 L⊙. These halos were selected from a ACDM cosmological box, tracking their evolution down to redshift z = 0. We explored a variety of primordial magnetic field (comoving) strengths of Bλ ranging from 0:05 to 0:50 nG. Results. We find that magnetic fields in the interstellar medium not only modify star formation processes in dwarf spheroidal galaxies, but these fields also entirely prevent the formation of stars in less compact, ultra-faint galaxies with halo masses and stellar masses below, respectively, ∼2:5 × 109 and 3 × 106 M⊙. At high redshifts, the impact of PMFs on host halos of dwarf galaxies through the modification of the matter power spectrum is more dominant than the influence of magneto-hydrodynamics in shaping their gaseous structure. Through the amplification of small perturbations ranging in mass from 107 to 109 M⊙ in the ACDM+PMFs matter power spectrum, primordial fields expedite the formation of the first dark matter halos, leading to an earlier onset and a higher star formation rate at redshifts of z > 9. We investigated the evolution of various energy components and demonstrated that magnetic fields with an initial strength of Bλ ≥ 0:05 nG exhibit a strong growth of magnetic energy, accompanied by a saturation phase that begins soon after the growth phase. These trends persist consistently, regardless of the initial conditions or whether it is the classical ACDM model or ACDM modified by PMFs. Lastly, we investigated the impact of PMFs on the present-time observable properties of dwarf galaxies, namely: the half light radius, V-band luminosity, mean metallicity, and velocity dispersion profile. We find that PMFs with moderate strengths of Bλ ≤ 0:10 nG show an impressive agreement with the scaling relations of the observed Local Group dwarfs. However, stronger fields lead to larger sizes and higher velocity dispersions.

dc.description.sponsorship

LASTRO

dc.identifier

10.1051/0004-6361/202449822

dc.identifier.doi

10.1051/0004-6361/202449822

dc.identifier.scopus

2-s2.0-85205974646

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/241766

dc.language.iso

en

dc.relation.issn

0004-6361

dc.relation.journal

Astronomy & Astrophysics

dc.rights

true

dc.subject

Galaxies: dwarf

dc.subject

Galaxies: evolution

dc.subject

Galaxies: high-redshift

dc.subject

Galaxies: magnetic fields

dc.subject

Galaxies: star formation

dc.subject

Magnetohydrodynamics (MHD)

dc.title

Dwarf galaxies as a probe of a primordially magnetized Universe

dc.type

text::journal::journal article::research article

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Publication

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main document

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0000-0003-0617-8590

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0000-0002-4059-9850

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0000-0002-6227-0108

epfl.contributor.role

yes

epfl.peerreviewed

REVIEWED

epfl.workflow.startDateTime

2024-10-18T09:18:26.012Z

epfl.writtenAt

EPFL

local.scopus.sourceType

ar

oaire.citation.articlenumber

A59

oaire.citation.endPage

17

oaire.citation.startPage

1

oaire.citation.volume

690

oaire.licenseCondition

CC BY

oaire.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

oairecerif.author.affiliation

École Polytechnique Fédérale de Lausanne

oairecerif.author.affiliation

EPFL

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EPFL

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57219765193

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57193826368

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52164478200

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22136102000

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6603097520

person.identifier.scopus-author-id

7004857591

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