Black Holes in Modified Gravity (MOG)
Abstract
The field equations for Scalar-Tensor-Vector-Gravity (STVG) or modified gravity (MOG) have a static, spherically symmetric black hole solution determined by the mass with two horizons. The strength of the gravitational constant is where is a parameter. A regular singularity-free MOG solution is derived using a nonlinear field dynamics for the repulsive gravitational field component and a reasonable physical energy-momentum tensor. The Kruskal-Szekeres completion of the MOG black hole solution is obtained. The Kerr-MOG black hole solution is determined by the mass , the parameter and the spin angular momentum . The equations of motion and the stability condition of a test particle orbiting the MOG black hole are derived, and the radius of the black hole photosphere and the shadows cast by the Schwarzschild-MOG and Kerr-MOG black holes are calculated. A traversable wormhole solution is constructed with a throat stabilized by the repulsive component of the gravitational field.
Cite
@article{arxiv.1412.5424,
title = {Black Holes in Modified Gravity (MOG)},
author = {J. W. Moffat},
journal= {arXiv preprint arXiv:1412.5424},
year = {2015}
}
Comments
14 pages, 3 figures. Upgraded version of paper to match published version in European Physics Journal C