English

Newtonian Fractional-Dimension Gravity and Disk Galaxies

General Relativity and Quantum Cosmology 2021-02-15 v3 Astrophysics of Galaxies

Abstract

This paper continues previous work on a novel alternative model of gravity, based on the theory of fractional-dimension spaces applied to Newton's law of gravitation. In particular, our Newtonian Fractional-Dimension Gravity is now applied to axially-symmetric structures, such as thin/thick disk galaxies described by exponential, Kuzmin, or other similar mass distributions. As in the case of spherically-symmetric structures, which was studied in previous work on the subject, we examine a possible connection between our model and Modified Newtonian Dynamics, a leading alternative gravity model, which accounts for the observed properties of galaxies and other astrophysical structures without requiring the dark matter hypothesis. By relating the MOND acceleration constant a01.2×1010\mboxm\mboxs2a_{0} \simeq 1.2 \times 10^{ -10}\mbox{m}\thinspace \mbox{s}^{ -2} to a natural scale length l0l_{0} of our model, namely a0GM/l02a_{0} \approx GM/l_{0}^{2} for a galaxy of mass MM, and by using the empirical Radial Acceleration Relation, we are able to explain the connection between the observed radial acceleration gobsg_{obs} and the baryonic radial acceleration gbarg_{bar} in terms of a variable local dimension DD. As an example of this methodology, we provide a detailed rotation curve fitting for the case of the field dwarf spiral galaxy NGC 6503.

Keywords

Cite

@article{arxiv.2008.04737,
  title  = {Newtonian Fractional-Dimension Gravity and Disk Galaxies},
  author = {Gabriele U. Varieschi},
  journal= {arXiv preprint arXiv:2008.04737},
  year   = {2021}
}

Comments

23 pages, including 6 figures: references added and other minor changes after peer review. Final version to be published in The European Physical Journal Plus, Springer

R2 v1 2026-06-23T17:46:45.835Z