SAMI-H i: the connection between global asymmetry in the ionized and neutral atomic hydrogen gas in galaxies

Author:

Watts Adam B12ORCID,Cortese Luca12ORCID,Catinella Barbara12ORCID,Power Chris12ORCID,Fraser-McKelvie Amelia12ORCID,Bryant Julia J234,Croom Scott M23ORCID,van de Sande Jesse23ORCID,Bland-Hawthorn Joss234ORCID,Groves Brent12ORCID

Affiliation:

1. International Centre for Radio Astronomy Research, The University of Western Australia , Crawley, WA 6009, Australia

2. ARC Centre of Excellence for All-Sky Astrophysics in 3 Dimensions (ASTRO 3D) , Australia

3. Sydney Institute for Astronomy (SIfA), School of Physics, The University of Sydney , NSW 2006, Australia

4. Australian Astronomical Optics, AAO-USydney, School of Physics, The University of Sydney , NSW 2006, Australia

Abstract

ABSTRACT Observations of the neutral atomic hydrogen (${\rm H\, {\small I}}$) gas in galaxies are predominantly spatially unresolved, in the form of a global ${\rm H\, {\small I}}$ spectral line. There has been substantial work on quantifying asymmetry in global ${\rm H\, {\small I}}$ spectra (‘global ${\rm H\, {\small I}}$ asymmetry’), but due to being spatially unresolved, it remains unknown what physical regions of galaxies the asymmetry traces, and whether the other gas phases are affected. Using optical integral field spectrograph (IFS) observations from the Sydney AAO Multi-object IFS (SAMI) survey for which global ${\rm H\, {\small I}}$ spectra are also available (SAMI-${\rm H\, {\small I}}$), we study the connection between asymmetry in galaxies’ ionized and neutral gas reservoirs to test if and how they can help us better understand the origin of global ${\rm H\, {\small I}}$ asymmetry. We reconstruct the global Hα spectral line from the IFS observations and find that while some global Hα asymmetries can arise from disturbed ionized gas kinematics, the majority of asymmetric cases are driven by the distribution of Hα-emitting gas. When compared to the ${\rm H\, {\small I}}$, we find no evidence for a relationship between the global Hα and ${\rm H\, {\small I}}$ asymmetry. Further, a visual inspection reveals that cases where galaxies have qualitatively similar Hα and ${\rm H\, {\small I}}$ spectral profiles can be spurious, with the similarity originating from an irregular 2D Hα flux distribution. Our results highlight that comparisons between global Hα and ${\rm H\, {\small I}}$ asymmetry are not straightforward, and that many global ${\rm H\, {\small I}}$ asymmetries trace disturbances that do not significantly impact the central regions of galaxies.

Funder

Australian Research Council

Anglo-Australian Observatory

University of Sydney

Australian Astronomical Observatory

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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