Dark Matter in Fractional Gravity I: Astrophysical Tests on Galactic Scales
arXiv:2303.15767 · doi:10.3847/1538-4357/acc8ca
Abstract
[abridged] We explore the possibility that the dark matter (DM) component in galaxies may originate fractional gravity. In such a framework, the standard law of inertia continues to hold, but the gravitational potential associated to a given DM density distribution is determined by a modified Poisson equation including fractional derivatives (i.e., derivatives of non-integer type), that are meant to describe non-local effects. We derive analytically the expression of the potential that in fractional gravity corresponds to various spherically symmetric density profiles, including the Navarro-Frenk-White (NFW) distribution that is usually exploited to describe virialized halos of collisionless DM as extracted from body cosmological simulations. We show that in fractional gravity the dynamics of a test particle moving in a cuspy NFW density distribution is substantially altered with respect to the Newtonian case (i.e., basing on the standard Poisson equation), mirroring what in Newtonian gravity would instead be sourced by a density profile with an inner core. We test the fractional gravity framework on galactic scales, showing that: (i) it can provide accurate fits to the stacked rotation curves of galaxies with different properties; (ii) it can reproduce to reasonable accuracy the observed shape and scatter of the radial acceleration relation (RAR); (iii) it can properly account for the universal surface density and the core radius vs. disk scale-length scaling relations. Finally, we discuss the possible origin of the fractional gravity behavior as a fundamental or emerging property of the elusive DM component.
30 pages, 11 figures, Accepted by ApJ
References in corpus (37)
- A direct empirical proof of the existence of dark matter
- Ultralight scalars as cosmological dark matter
- The Pantheon+ Analysis: Cosmological Constraints
- The Circumgalactic Medium
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- SPARC: Mass Models for 175 Disk Galaxies with Spitzer Photometry and Accurate Rotation Curves
- The Radial Acceleration Relation in Rotationally Supported Galaxies
- Dark Energy Survey Year 3 Results: Cosmology from Cosmic Shear and Robustness to Data Calibration
- The effects of He I 10830 on helium abundance determinations
- High-resolution mass models of dwarf galaxies from LITTLE THINGS
- Dark matter and cosmic structure
- Dark Energy Survey Year 3 Results: Cosmology from Cosmic Shear and Robustness to Modeling Uncertainty
- The Universal Rotation Curve of Spiral Galaxies. II The Dark Matter Distribution out to the Virial Radius
- One Law To Rule Them All: The Radial Acceleration Relation of Galaxies
- The universal rotation curve of dwarf disk galaxies
- A Tale of Two Paradigms: the Mutual Incommensurability of LCDM and MOND
- Can MOND take a bullet? Analytical comparisons of three versions of MOND beyond spherical symmetry
- Constraints on the properties of warm dark matter using the satellite galaxies of the Milky Way
- The Radial Tully-Fisher relation for spiral galaxies I
- Einstein, Planck and Vera Rubin: relevant encounters between the Cosmological and the Quantum Worlds
- Cosmology under the fractional calculus approach
- Cosmological Constraints from Gas Mass Fractions of Massive, Relaxed Galaxy Clusters
- The kinematics of massive quiescent galaxies at : dark matter fractions, IMF variation, and the relation to local early-type galaxies
- The Disk Mass of Spiral Galaxies
- The XXL survey: XLVI. Forward cosmological analysis of the C1 cluster sample
- Hints of dark photon dark matter from observations and hydrodynamical simulations of the low-redshift Lyman- forest
- Probing the radial acceleration relation and the strong equivalence principle with the Coma cluster ultra-diffuse galaxies
- Quantum scalar field theories with fractional operators
- Observational Evidence of Evolving Dark Matter Profiles at
- Newtonian Fractional-Dimension Gravity and Rotationally Supported Galaxies
- Virial halo mass function in the cosmology
- Dark matter annihilation and the Galactic Centre Excess
- Gravitational potential and galaxy rotation curves in multi-fractional spacetimes
- Self-gravitating Equilibria of Non-minimally Coupled Dark Matter Halos
- Empirical Evidence of Non-Minimally Coupled Dark Matter in the Dynamics of Local Spiral Galaxies?
- Newtonian Fractional-Dimension Gravity and the External Field Effect
- A Stochastic Theory of the Hierarchical Clustering III. The Non-universality and Non-stationarity of the Halo Mass Function
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- A Relativistic Scalar Model for Fractional Interaction between Dark Matter and Gravity
- A Relativistic Tensorial Model for Fractional Interaction between Dark Matter and Gravity