Empirical Evidence of Non-Minimally Coupled Dark Matter in the Dynamics of Local Spiral Galaxies?
arXiv:2203.00572 · doi:10.3847/1538-4357/ac5970
Abstract
We look for empirical evidence of a non-minimal coupling (NMC) between dark matter (DM) and gravity in the dynamics of local spiral galaxies. In particular, we consider a theoretically motivated NMC that may arise dynamically from the collective behavior of the coarse-grained DM field (e.g., via Bose-Einstein condensation) with averaging/coherence length . In the Newtonian limit, this NMC amounts to modify the Poisson equation by a term proportional to the Laplacian of the DM density itself. We show that such a term, when acting as a perturbation over the standard Navarro-Frenk-White (NFW) profile of cold DM particles, can substantially alter the dynamical properties of galaxies, in terms of their total radial acceleration within the disk and rotation velocity. Specifically, we find that this NMC model can properly fit the stacked rotation curves of local spiral galaxies with different velocities at the optical radius, including dwarfs and low-surface brightness systems, at a level of precision comparable to, and in some instances even better than, the phenomenological Burkert profile. Finally we show that, extrapolating down to smaller masses the scaling of vs. halo mass found from the above rotation curve analysis, the NMC model can adequately reproduce the radial acceleration relation (or RAR) in shape and normalization down to the dwarf spheroidal galaxy range, a task which constitutes a serious challenge for alternative DM models even inclusive of baryonic effects.
39 pages, 22 figures. Accepted by ApJ
References in corpus (21)
- SPARC: Mass Models for 175 Disk Galaxies with Spitzer Photometry and Accurate Rotation Curves
- The Radial Acceleration Relation in Rotationally Supported Galaxies
- Structural Properties of Pseudo-Bulges, Classical Bulges and Elliptical Galaxies: an SDSS Perspective
- COLD GASS, an IRAM legacy survey of molecular gas in massive galaxies: I. Relations between H2, HI, stellar content and structural properties
- One Law To Rule Them All: The Radial Acceleration Relation of Galaxies
- A mass-dependent density profile for dark matter haloes including the influence of galaxy formation
- Erasing Dark Matter Cusps in Cosmological Galactic Halos with Baryons
- The universal rotation curve of dwarf disk galaxies
- Testing the Strong Equivalence Principle: Detection of the External Field Effect in Rotationally Supported Galaxies
- The Relation between Stellar and Dynamical Surface Densities in the Central Regions of Disk Galaxies
- A statistical investigation of the mass discrepancy-acceleration relation
- Λ CDM is Consistent with SPARC Radial Acceleration Relation
- Testing the Strong Equivalence Principle. II. Relating the External Field Effect in Galaxy Rotation Curves to the Large-Scale Structure of the Universe
- Testing Verlinde's Emergent Gravity with the Radial Acceleration Relation
- Reconciling MOND and dark matter?
- Modified Gravity (MOG) fits to observed radial acceleration of SPARC galaxies
- Non-minimally coupled dark matter: effective pressure and structure formation
- Navarro-Frenk-White dark matter profile and the dark halos around disk systems
- Self-gravitating Equilibria of Non-minimally Coupled Dark Matter Halos
- The radial acceleration relation and dark baryons in MOND
- Conformal Gravity and the Radial Acceleration Relation
Cited by in corpus (6)
- Dark Matter in Fractional Gravity I: Astrophysical Tests on Galactic Scales
- Looking for Traces of Non-minimally Coupled Dark Matter in the X-COP Galaxy Clusters Sample
- Ultra-compact Objects of Non-minimally Coupled Dark Matter
- A Relativistic Tensorial Model for Fractional Interaction between Dark Matter and Gravity
- Beyond general relativity: gravitational waves in non-minimally coupled theories
- Cosmology with a Non-minimally Coupled Dark Matter Fluid I. Background Evolution