2015
DOI: 10.1007/s11232-015-0364-1
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Classification of minimum global embeddings for nonrotating black holes

Abstract: We consider the problem of the existence of global embeddings of metrics of spherically symmetric black holes into an ambient space with the minimal possible dimension. We classify the possible types of embeddings by the type of realization of the metric symmetry by ambient space symmetries. For the Schwarzschild, Schwarzschild-de Sitter, and Reissner-Nordström black holes, we prove that the known global embeddings are the only ones. We obtain a new global embedding for the Reissner-Nordström-de Sitter metrics… Show more

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Cited by 10 publications
(15 citation statements)
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“…In Section 3 we construct new explicit global embedding of static BTZ black hole in 6D spacetime. In section 4 we finish the proof of the absence of global 6-dimensional embeddings for AdS black holes which was started in [16]. Then we construct global 7dimensional embedding for Schwarzschild-AdS black hole, as well as its generalization: the global embedding of d-dimensional Schwarzschild-AdS black hole in (d + 3)D flat spacetime.…”
Section: Introductionmentioning
confidence: 91%
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“…In Section 3 we construct new explicit global embedding of static BTZ black hole in 6D spacetime. In section 4 we finish the proof of the absence of global 6-dimensional embeddings for AdS black holes which was started in [16]. Then we construct global 7dimensional embedding for Schwarzschild-AdS black hole, as well as its generalization: the global embedding of d-dimensional Schwarzschild-AdS black hole in (d + 3)D flat spacetime.…”
Section: Introductionmentioning
confidence: 91%
“…The construction and classification of embeddings for RN [15], Schwarzschild-de Sitter [31] and RN-dS [16] black holes was already done in our previous papers. The only remaining metric which has to be globally embedded in an ambient space with minimal possible number of dimensions is an embedding of the black hole (with or without an electric charge) with negative cosmological constant, i.e.…”
Section: The Embedding Of Static Black Holesmentioning
confidence: 99%
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