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The dark and baryonic matter content of low surface brightness disk galaxies

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arxiv astro-ph/9704274 v1 pith:ZGJIKGCS submitted 1997-04-28 astro-ph

classification astro-ph
keywords galaxiesbrightnessdarkmassmatterstellarsurfacedisk
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We present mass models of a sample of 19 low surface brightness (LSB) galaxies and compare the properties of their constituent mass components with those of a sample of high surface brightness (HSB) galaxies.We find that LSB galaxies are dark matter dominated. Their halo parameters are only slightly affected by assumptions on stellar mass-to-light ratios. Comparing LSB and HSB galaxies we find that mass models derived using the maximum disk hypothesis result in the disks of LSB galaxies having systematically higher stellar mass-to-light ratios than HSB galaxies of similar rotation velocity. This is inconsistent with all other available evidence on the evolution of LSB galaxies. We argue therefore that the maximum disk hypothesis does not provide a representative description of the LSB galaxies and their evolution. Mass models with stellar mass-to-light ratios determined by the colors and stellar velocity dispersions of galactic disks imply that LSB galaxies have dark matter halos that are more extended and less dense than those of HSB galaxies. Surface brightness is thus related to the halo properties. LSB galaxies are slowly evolving, low density and dark matter dominated galaxies.

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Cited by 2 Pith papers

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  1. Improved constraints on modified Newtonian gravity from Cassini radio tracking data

    gr-qc 2026-02 conditional novelty 4.0 of 10

    An updated Cassini/DE440 fit gives a 40% tighter Solar System quadrupole constraint, producing 3–15 sigma tensions with galaxy rotation curves and a <=2% Milky Way MOND boost.

  2. Vertical Structure and Dynamics of a Galactic Disk

    astro-ph.GA 2025-07 conditional novelty 1.0 of 10

    A review of a multi-component disk plus halo model, arguing that gas and dark matter vertically confine the stellar disk, producing steeper-than-sech^2 profiles and flaring.

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