arXiv · 1808.07513
Black Holes in Magnetic Monopoles with a Dark Halo
Abstract
We study a spontaneously broken Einstein-Yang-Mills-Higgs model coupled via a Higgs portal to an uncharged scalar $\chi$. We present a phase diagram of self-gravitating solutions showing that, depending on the choice of parameters of the $\chi$ scalar potential and the Higgs portal coupling constant $ \gamma$, one can identify different regions: If $\gamma$ is sufficiently small a $\chi$ halo is created around the monopole core which in turn surrounds a black-hole. For larger values of $\gamma$ no halo exists and the solution is just a black hole-monopole one. When the horizon radius grows and becomes larger than the monopole radius solely a black hole solution exists. Because of the presence of the $\chi$ scalar a bound for the Higgs potential coupling constant exists and when it is not satisfied, the vacuum is unstable and no non-trivial solution exists. We briefly comment on a possible connection of our results with those found in recent dark matter axion models.
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A. Lugo, J. M. Pérez Ipiña, F. A. Schaposnik. 2018-08-22. Black Holes in Magnetic Monopoles with a Dark Halo. https://doi.org/10.1142/s0217751x19500027
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