Can the galactic rotation curves be explained in brane world models?
M. K. Mak, T. Harko

TL;DR
This paper explores how brane world models with conformal symmetry can explain galactic rotation curves without dark matter by deriving exact solutions and analyzing test particle velocities.
Contribution
It provides exact parametric solutions for vacuum gravitational fields in brane models and links these to galactic rotation curves, offering an alternative to dark matter explanations.
Findings
Tangential velocity tends to a constant at large distances.
Dark radiation and pressure are related to rotational velocity.
Model predictions are testable through observations.
Abstract
We consider solutions with conformal symmetry of the static, spherically symmetric gravitational field equations in the vacuum in the brane world scenario. By assuming that the vector field generating the symmetry is non-static, the general solution of the field equations on the brane can be obtained in an exact parametric form, with the conformal factor taken as parameter. As a physical application of the obtained solutions we consider the behavior of the angular velocity of a test particle moving in a stable circular orbit. In this case the tangential velocity can be expressed as a function of the conformal factor and some integration constants only. For a specific range of the integration constants, the tangential velocity of the test particle tends, in the limit of large radial distances, to a constant value. This behavior is specific to the galactic rotation curves, and is…
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