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Sökning: onr:"swepub:oai:lup.lub.lu.se:b57a5e02-8fb9-4672-bdda-86f41d1dbf5a" > EDGE : The mass-met...

EDGE : The mass-metallicity relation as a critical test of galaxy formation physics

Agertz, Oscar (författare)
Lund University,Lunds universitet,Astronomi - Genomgår omorganisation,Institutionen för astronomi och teoretisk fysik - Genomgår omorganisation,Naturvetenskapliga fakulteten,Lund Observatory - Undergoing reorganization,Department of Astronomy and Theoretical Physics - Undergoing reorganization,Faculty of Science
Pontzen, Andrew (författare)
University College London
Read, Justin I. (författare)
University of Surrey
visa fler...
Rey, Martin P. (författare)
University College London
Orkney, Matthew (författare)
University of Surrey
Rosdahl, Joakim (författare)
Teyssier, Romain (författare)
University of Zurich
verbeke, Robbert (författare)
University of Zurich
Kretschmer, Michael (författare)
University of Zurich
Nickerson, Sarah (författare)
University of Zurich
visa färre...
 (creator_code:org_t)
2019-10-31
2020
Engelska 17 s.
Ingår i: Monthly Notices of the Royal Astronomical Society. - : Oxford University Press (OUP). - 0035-8711 .- 1365-2966. ; 491:2, s. 1656-1672
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • We introduce the 'Engineering Dwarfs at Galaxy Formation's Edge' (EDGE) project to study the cosmological formation and evolution of the smallest galaxies in the Universe. In this first paper, we explore the effects of resolution and sub-grid physics on a single low-mass halo (Mhalo = 109M⊙), simulated to redshift z = 0 at amass and spatial resolution of ∼ 20 M⊙ and ∼3 pc. We consider different star formation prescriptions, supernova feedback strengths, and on-the-fly radiative transfer (RT). We show that RT changes the mode of galactic self-regulation at this halo mass, suppressing star formation by causing the interstellar and circumgalactic gas to remain predominantly warm (∼104K) even before cosmic reionization. By contrast, without RT, star formation regulation occurs only through starbursts and their associated vigorous galactic outflows. In spite of this difference, the entire simulation suite (with the exception of models without any feedback) matches observed dwarf galaxy sizes, velocity dispersions, V-band magnitudes, and dynamical mass-to-light-ratios. This is because such structural scaling relations are predominantly set by the host dark matter halo, with the remaining model-to-model variation being smaller than the observational scatter. We find that only the stellar mass-metallicity relation differentiates the galaxy formation models. Explosive feedback ejects more metals from the dwarf, leading to a lower metallicity at a fixed stellar mass. We conclude that the stellar mass-metallicity relation of the very smallest galaxies provides a unique constraint on galaxy formation physics.

Ämnesord

NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

Nyckelord

Galaxies: dwarf
Galaxies: evolution
Galaxies: formation
Galaxies: kinematics and dynamics
Local Group
Methods: numerical

Publikations- och innehållstyp

art (ämneskategori)
ref (ämneskategori)

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