Addressing the core-cusp and diversity problem of dwarf and disk galaxies using cold collisionless DARKexp theory
arXiv:2502.15879 · doi:10.1088/1475-7516/2025/08/052
Abstract
Dwarf galaxies are observed to have linearly rising rotation curves, which indicate constant density cores in their centers. These do not arise naturally from dark matter only simulations, giving rise to the ``core-cusp'' problem. Hydrodynamic simulations incorporating baryonic feedback can create cored profiles, but this solution requires some fine tuning. Additionally, there is a related ``diversity'' problem in which simulations cannot reproduce the large range in rotation curve shapes for galaxies of similar mass. Here we investigate, for the first time, whether a theoretical model based on statistical mechanics (DARKexp) can produce flat density cores with its single shape parameter. We find that these theoretical profiles are able to fit the observed rotation curves of galaxies with last measured velocities in the range ~ 20-200 km/s by producing fits to 96 SPARC catalog galaxies covering this range. We additionally show that the projected stellar density distributions of ultrafaint dwarfs that show cores are also well fit, and that wave, or fuzzy dark matter is unable to fit the full range of SPARC galaxies. Thus, DARKexp appears to be able to address the core-cusp problem and the diversity of rotation curves in these dark matter dominated galaxies with cold collisionless dark matter alone, i.e., without introducing baryonic feedback, or alternative nature of dark matter.
21 pages, 11 figures, to appear in JCAP
References in corpus (21)
- SPARC: Mass Models for 175 Disk Galaxies with Spitzer Photometry and Accurate Rotation Curves
- Understanding the Core-Halo Relation of Quantum Wave Dark Matter, DM, from 3D Simulations
- High-resolution mass models of dwarf galaxies from LITTLE THINGS
- Wave Dark Matter
- MOND theory
- The Relation between Stellar and Dynamical Surface Densities in the Central Regions of Disk Galaxies
- Detection of the Keplerian decline in the Milky Way rotation curve
- ELVES I: Structures of Dwarf Satellites of MW-like Galaxies; Morphology, Scaling Relations, and Intrinsic Shapes
- NIHAO XIV: Reproducing the observed diversity of dwarf galaxy rotation curve shapes in LCDM
- Statistical mechanics of collisionless orbits. I. Origin of central cusps in dark-matter halos
- Observational constraints on stellar feedback in dwarf galaxies
- Andromeda XXI -- a dwarf galaxy in a low density dark matter halo
- The MUSE Extremely Deep Field: Evidence for SFR-induced cores in dark-matter dominated galaxies at z=1
- An almost dark galaxy with the mass of the Small Magellanic Cloud
- Statistical mechanics of collisionless orbits. III. Comparison with N-body simulations
- The cusp-core problem in gas-poor dwarf spheroidal galaxies
- Collisionless dynamics in Globular Clusters
- Confronting the Diversity Problem: The Limits of Galaxy Rotation Curves as a tool to Understand Dark Matter Profiles
- Statistical Mechanics of Collisionless Orbits. V. The approach to equilibrium for idealized self-gravitating systems
- Central densities of dark matter halos in FIRE-2 simulations of low-mass galaxies with cold dark matter and self-interacting dark matter
- Signatures of Fuzzy Dark Matter Inside Radial Critical Curves