A dynamics-free lower bound on the mass of our Galaxy

We use a sample of Milky Way (MW) analogues for which we have stellar and disc gas mass measurements, published measurements of halo gas masses of the MW and of similar galaxies, and the well-established value of the cosmological baryon fraction to place a lower bound on the mass of the Galaxy of 7....

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Main Authors: Zaritsky, Dennis, Courtois, Helene
Other Authors: Univ Arizona, Steward Observ
Language:en
Published: OXFORD UNIV PRESS 2017
Subjects:
Online Access:http://hdl.handle.net/10150/623207
http://arizona.openrepository.com/arizona/handle/10150/623207
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6232072017-04-23T03:00:35Z A dynamics-free lower bound on the mass of our Galaxy Zaritsky, Dennis Courtois, Helene Univ Arizona, Steward Observ Galaxy: fundamental parameters We use a sample of Milky Way (MW) analogues for which we have stellar and disc gas mass measurements, published measurements of halo gas masses of the MW and of similar galaxies, and the well-established value of the cosmological baryon fraction to place a lower bound on the mass of the Galaxy of 7.7 x 10(11) M-circle dot and estimate that the mass is likely to be >= 1.2 x 10(12) M-circle dot. Although most dynamical analyses yield measurements consistent with these results, several recent studies have advocated for a total mass well below 10(12) M-circle dot. We reject such low-mass estimates because they imply a Galactic baryon matter fraction significantly above the universal value. Convergence between dynamical mass estimates and those based on the baryonic mass is an important milestone in our understanding of galaxies. 2017-03-01 Article A dynamics-free lower bound on the mass of our Galaxy 2017, 465 (3):3724 Monthly Notices of the Royal Astronomical Society 0035-8711 1365-2966 10.1093/mnras/stw2922 http://hdl.handle.net/10150/623207 http://arizona.openrepository.com/arizona/handle/10150/623207 Monthly Notices of the Royal Astronomical Society en https://academic.oup.com/mnras/article-lookup/doi/10.1093/mnras/stw2922 © 2016 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society OXFORD UNIV PRESS
collection NDLTD
language en
sources NDLTD
topic Galaxy: fundamental parameters
spellingShingle Galaxy: fundamental parameters
Zaritsky, Dennis
Courtois, Helene
A dynamics-free lower bound on the mass of our Galaxy
description We use a sample of Milky Way (MW) analogues for which we have stellar and disc gas mass measurements, published measurements of halo gas masses of the MW and of similar galaxies, and the well-established value of the cosmological baryon fraction to place a lower bound on the mass of the Galaxy of 7.7 x 10(11) M-circle dot and estimate that the mass is likely to be >= 1.2 x 10(12) M-circle dot. Although most dynamical analyses yield measurements consistent with these results, several recent studies have advocated for a total mass well below 10(12) M-circle dot. We reject such low-mass estimates because they imply a Galactic baryon matter fraction significantly above the universal value. Convergence between dynamical mass estimates and those based on the baryonic mass is an important milestone in our understanding of galaxies.
author2 Univ Arizona, Steward Observ
author_facet Univ Arizona, Steward Observ
Zaritsky, Dennis
Courtois, Helene
author Zaritsky, Dennis
Courtois, Helene
author_sort Zaritsky, Dennis
title A dynamics-free lower bound on the mass of our Galaxy
title_short A dynamics-free lower bound on the mass of our Galaxy
title_full A dynamics-free lower bound on the mass of our Galaxy
title_fullStr A dynamics-free lower bound on the mass of our Galaxy
title_full_unstemmed A dynamics-free lower bound on the mass of our Galaxy
title_sort dynamics-free lower bound on the mass of our galaxy
publisher OXFORD UNIV PRESS
publishDate 2017
url http://hdl.handle.net/10150/623207
http://arizona.openrepository.com/arizona/handle/10150/623207
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