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Energy conditions of non-singular black hole spacetimes in conformal gravity

Bobir ToshmatovFaculty of Philosophy and Science, Institute of Physics, Silesian University in Opava, Bezručovo náměstí 13, 74601, Opava, Czech RepublicCosimo BambiDepartment of Physics, Center for Field Theory and Particle Physics, Fudan University, Shanghai, 200433, ChinaBobomurat AhmedovNational University of Uzbekistan, Tashkent, 100174, UzbekistanAhmadjon AbdujabbarovNational University of Uzbekistan, Tashkent, 100174, UzbekistanZdeněk StuchlíkFaculty of Philosophy and Science, Institute of Physics, Silesian University in Opava, Bezručovo náměstí 13, 74601, Opava, Czech Republic
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Аннотация

Conformal gravity can elegantly solve the problem of spacetime singularities present in Einstein’s gravity. For every physical spacetime, there is an infinite family of conformally equivalent singularity-free metrics. In the unbroken phase, every non-singular metric is equivalent and can be used to infer the physical properties of the spacetime. In the broken phase, a Higgs-like mechanism should select a certain vacuum, which thus becomes the physical one. However, in the absence of the complete theoretical framework we do not know how to select the right vacuum. In this paper, we study the energy conditions of non-singular black hole spacetimes obtained in conformal gravity assuming they are solutions of Einstein’s gravity with an effective energy-momentum tensor. We check whether such conditions can be helpful to select the vacuum of the broken phase.

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