SIMBAD references

2021MNRAS.507..565K - Mon. Not. R. Astron. Soc., 507, 565-578 (2021/October-2)

The H I angular momentum-mass relation.

KURAPATI S., CHENGALUR J.N. and VERHEIJEN M.A.W.

Abstract (from CDS):

We study the relationship between the H I specific angular momentum ( jg) and the H I mass ( Mg) for a sample of galaxies with well-measured H I rotation curves. We find that the relation is well described by an unbroken power law jg ∝ Mgα over the entire mass range (107-1010.5 M), with α = 0.89 ± 0.05 (scatter 0.18 dex). This is in reasonable agreement with models which assume that evolutionary processes maintain H I discs in a marginally stable state. The slope we observe is also significantly different from both the j ∝ M2/3 relation expected for dark matter haloes from tidal torquing models and the observed slope of the specific angular momentum-mass relation for the stellar component of disc galaxies. Our sample includes two H I-bearing ultra-diffuse galaxies, and we find that their angular momentum follows the same relation as other galaxies. The only discrepant galaxies in our sample are early-type galaxies with large rotating H I discs, which are found to have significantly higher angular momentum than expected from the power-law relation. The H I discs of all these early-type galaxies are misaligned or counter-rotating with respect to the stellar discs, consistent with the gas being recently accreted. We speculate that late-stage wet mergers, as well as cold flows play a dominant role in determining the kinematics of the baryonic component of galaxies as suggested by recent numerical simulations.

Abstract Copyright: © 2021 The Author(s) Published by Oxford University Press on behalf of Royal Astronomical Society

Journal keyword(s): galaxies: dwarf - galaxies: fundamental parameters - galaxies: kinematics and dynamics

Simbad objects: 28

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