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Ghost and Laplacian instabilities in teleparallel Horndeski gravity

Salvatore CapozzıelloDipartimento di Fisica “E. Pancini”, Università degli Studi di Napoli, “Federico II”, Complesso Universitario Monte S. Angelo, Via Cinthia 9 Edificio G, 80126 Napoli, ItalyMaria CaruanaDepartment of Physics, University of Malta, Msida, MSD 2080, MaltaJackson Levi SaidDepartment of Physics, University of Malta, Msida, MSD 2080, MaltaJoseph SultanaDepartment of Mathematics, University of Malta, Msida, MSD 2080, Malta
2023en
ABI

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Abstract Teleparallel geometry offers a platform on which to build up theories of gravity where torsion rather than curvature mediates gravitational interaction. The teleparallel analogue of Horndeski gravity is an approach to teleparallel geometry where scalar-tensor theories are considered in this torsional framework. Teleparallel gravity is based on the tetrad formalism. This turns out to result in a more general formalism of Horndeski gravity. In other words, the class of teleparallel Horndeski gravity models is much broader than the standard metric one. In this work, we explore constraints on this wide range of models coming from ghost and Laplacian instabilities. The aim is to limit pathological branches of the theory by fundamental considerations. It is possible to conclude that a very large class of models results physically viable.

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