Probability for Primordial Black Holes in Multidimensional Universe with Nonlinear Scalar Curvature Terms

Abstract

We investigate multi-dimensional universe with nonlinear scalar curvature terms to evaluate the probability of creation of primordial black holes. For this we obtain Euclidean instanton solution in two different topologies: (a) SD-1 - topology which does not accommodate primordial black holes and (b) S1× SD-2-topology which accommodates a pair of black holes. The probability for quantum creation of an inflationary universe with a pair of black holes has been evaluated assuming a gravitational action which is described by a polynomial function of scalar curvature with or without a cosmological constant ( ) using the framework of semiclassical approximation of Hartle-Hawking boundary conditions. We discuss here a class of new gravitational instantons solution in the R4-theory which are relevant for cosmological model building.

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