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Semiclassical gravitational collapse and avoidance of singularities

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dc.contributor.author Malafarina, D.
dc.date.accessioned 2015-11-02T03:57:32Z
dc.date.available 2015-11-02T03:57:32Z
dc.date.issued 2014
dc.identifier.isbn 9786018046728
dc.identifier.uri http://nur.nu.edu.kz/handle/123456789/646
dc.description.abstract General Relativity (GR) predicts that, under standard conditions for normal matter, when gravity prevails over other forces, a space-time singularity must form [1]. On the other hand singularities are not expected to occur in the real universe as they may lead to pathological problems for the causal structure of the space-time. Several recent studies suggest that there may be mechanisms that prevent the formation of singularities and that these are likely to be related to quantum correction to GR that appear in the strong field regime. We considered some mathematical toy models describing complete gravitational collapse of a massive cloud that classically lead to the formation of a singularity. In order to fully characterize the final stages of collapse we would then need to use a theory of quantum-gravity which we do not possess yet. On the other hand semi-classical approaches are possible and they provide valuable hints at how gravity behaves in such extreme conditions [2]. ru_RU
dc.language.iso en ru_RU
dc.publisher Nazarbayev University ru_RU
dc.subject gravitational collapse ru_RU
dc.subject singularities ru_RU
dc.subject mechanisms ru_RU
dc.subject models ru_RU
dc.subject quantum-gravity ru_RU
dc.subject conditions ru_RU
dc.subject conditions ru_RU
dc.title Semiclassical gravitational collapse and avoidance of singularities ru_RU
dc.type Abstract ru_RU


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