Radiating black holes in Einstein-Yang-Mills theory and cosmic censorship
arXiv:1009.0982 · doi:10.1103/PhysRevD.82.044038
Abstract
Exact nonstatic spherically symmetric black-hole solution of the higher dimensional Einstein-Yang-Mills equations for a null dust with Yang-Mills gauge charge are obtained by employing Wu-Yang \textit{ansatz}, namely, HD-EYM Vaidya solution. It is interesting to note that gravitational contribution of YM gauge charge for this ansatz is indeed opposite (attractive rather than repulsive) that of Maxwell charge. It turns out that the gravitational collapse of null dust with YM gauge charge admit strong curvature shell focusing naked singularities violating cosmic censorship. However, there is significant shrinkage of the initial data space for a naked singularity of the HD-Vaidya collapse due to presence of YM gauge charge. The effect of YM gauge charge on structure and location of the apparent and event horizons is also discussed.
9 RevTeX pages, 1 figure
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Cited by in corpus (6)
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- 5D Radiating black holes in Einstein-Yang-Mills-Gauss-Bonnet gravity
- Quantum tunneling from scalar fields in rotating black strings
- Spinning Higher Dimensional Einstein-Yang-Mills black holes
- Gravitating magnetic monopole in Vaidya geometry