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Gravitational field of global monopole within the Eddington-inspired Born-Infeld theory of gravity

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arxiv 1803.03001 v2 pith:VBBKUQ3A submitted 2018-03-08 gr-qc hep-th

classification gr-qchep-th
keywords angleglobalkappamonopolebarriola-vilenkinborn-infelddeficiteddington-inspired
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abstract

Within the framework of the recent Eddington-inspired Born-Infeld (EiBI) theory we study gravitational field around an $SO(3)$ global monopole. The solution also suffers from the deficit solid angle as in the Barriola-Vilenkin metric but shows a distinct feature that cannot be transformed away unless in the vanishing EiBI coupling constant, $\kappa$. When seen as a black hole eating up a global monopole, the corresponding Schwarzschild horizon is shrunk by $\kappa$. The deficit solid angle makes the space is globally not Euclidean, and to first order in $\kappa$ (weak-field limit) the deflection angle of light is smaller than its Barriola-Vilenkin counterpart.

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    Deforming the matter sector via quadratic stress-energy functionals maps solutions of Einstein field equations to solutions of the Ricci-Bourguignon flow.

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