Incorporating baryon-driven contraction of dark matter halos in rotation curve fits

Author:

Li PengfeiORCID,McGaugh Stacy S.ORCID,Lelli FedericoORCID,Schombert James M.ORCID,Pawlowski Marcel S.ORCID

Abstract

The condensation of baryons within a dark matter (DM) halo during galaxy formation should result in some contraction of the halo as the combined system settles into equilibrium. We quantify this effect on the cuspy primordial halos predicted by DM-only simulations for the baryon distributions observed in the galaxies of the SPARC database. We find that the DM halos of high surface brightness galaxies (with Σeff ≳ 100 L pc−2 at 3.6 μm) experience strong contraction. Halos become more cuspy as a result of compression: the inner DM density slope increases with the baryonic surface mass density. We iteratively fit rotation curves to find the balance between initial halo parameters (constrained by abundance matching), compression, and stellar mass-to-light ratio. The resulting fits often require lower stellar masses than expected for stellar populations, particularly in galaxies with bulges: stellar mass must be reduced to make room for the DM it compresses. This trade off between dark and luminous mass is reminiscent of the cusp-core problem in dwarf galaxies, but occurs in more massive systems: the present-epoch DM halos cannot follow from cuspy primordial halos unless (1) the stellar mass-to-light ratios are systematically smaller than expected from standard stellar population synthesis models, and/or (2) there is a net outward mass redistribution from the initial cusp, even in massive galaxies widely considered to be immune from such effects.

Funder

Alexander von Humboldt Foundation

NASA

NSF

Leibniz-Junior Research Group

German Scholars Organization and Kalus Tschira Stifung

Publisher

EDP Sciences

Subject

Space and Planetary Science,Astronomy and Astrophysics

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1. The Nearly Universal Disk Galaxy Rotation Curve;The Astrophysical Journal;2024-08-22

2. Indefinitely Flat Circular Velocities and the Baryonic Tully–Fisher Relation from Weak Lensing;The Astrophysical Journal Letters;2024-06-20

3. Building stellar bulges and halo cores from massive clumps observed in the DYNAMO-HST sample;Monthly Notices of the Royal Astronomical Society;2024-03-06

4. The information on halo properties contained in spectroscopic observations of late-type galaxies;Monthly Notices of the Royal Astronomical Society;2023-08-31

5. Inferring dark matter halo properties for H i-selected galaxies;Monthly Notices of the Royal Astronomical Society;2023-05-09

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