4.7 Article

Geometric Proca with matter in metric-Palatini gravity

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EUROPEAN PHYSICAL JOURNAL C
卷 82, 期 11, 页码 -

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SPRINGER
DOI: 10.1140/epjc/s10052-022-10986-7

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  1. TuBTAK BDEB-2218 national postdoctoral fellowship programme

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In this study, we investigate the extended metric-Palatini gravity theory with the universally-coupled geometric Proca field, derive the corresponding field equations, and discuss its potential roles in astrophysical and collider processes.
In the present work, we study linear, torsion-free metric-Palatini gravity, extended by the quadratics of the antisymmetric part of the Ricci tensor and extended also by the presence of the affine connection in the matter sector. We show that this extended metric-Palatini gravity reduces dynamically to the general relativity plus a geometrical massive vector field corresponding to non-metricity of the connection. We also show that this geometric Proca field couples to fermions universally. We derive static, spherically symmetric field equations of this Einstein-geometric Proca theory. We study possibility of black hole solutions by taking into account the presence of a dust distribution that couples to the geometric Proca. Our analytical and numerical analyses show that the presence of this dust worsens the possibility of horizon formation. We briefly discuss possible roles of this universally-coupled geometric Proca in the astrophysical and collider processes.

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