Is dark matter an extra-dimensional effect?
arXiv:0809.1915 · doi:10.1142/S0217732309028667
Abstract
We investigate the possibility that the observed behavior of test particles outside galaxies, which is usually explained by assuming the presence of dark matter, is the result of the dynamical evolution of particles in higher dimensional space-times. Hence, dark matter may be a direct consequence of the presence of an extra force, generated by the presence of extra-dimensions, which modifies the dynamic law of motion, but does not change the intrinsic properties of the particles, like, for example, the mass (inertia). We discuss in some detail several possible particular forms for the extra force, and the acceleration law of the particles is derived. Therefore, the constancy of the galactic rotation curves may be considered as an empirical evidence for the existence of the extra dimensions.
11 pages, no figures, accepted for publication in MPLA; references added
References in corpus (11)
- Extra force in modified theories of gravity
- Tests of the Gravitational Inverse-Square Law below the Dark-Energy Length Scale
- Dark matter as a geometric effect in f(R) gravity
- Thin accretion disks in f(R) modified gravity models
- The virial theorem and the dynamics of clusters of galaxies in the brane world models
- Scalar Field Dark Matter: non-spherical collapse and late time behavior
- Galactic dark matter as a bulk effect on the brane
- On Einstein clusters as galactic dark matter halos
- Dilaton as a Dark Matter Candidate and its Detection
- Confinement and stability of the motion of test particles in thick branes
- A thin disk in higher dimensional space-time and dark matter interpretation