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Behaviours of rip cosmological models in f(Q,C) gravity

Amit Samaddar, S. Surendra Singh, Shah Muhammad, Euaggelos E. Zotos

2024Nuclear Physics B16 citationsDOIOpen Access PDF

Abstract

In this study, the Universe's rip cosmology theories have been provided for the f(Q,C) gravity theory, where Q and C stand for the non-metricity scalar and boundary term. We assume f(Q,C)=αQn+βC and analyze the nature of the physical parameters for the Little Rip (LR), Big Rip (BR) and Pseudo Rip (PR) models. In the LR and PR models, the EoS parameter exhibits phantom characteristics but remains closely aligned with the ΛCDM line. The non-metricity term Q has direct effect on the rip models. After investigating the energy conditions, we recognise that our model violates the strong energy constraint. Avoiding singularity situations has been noted in all of these accelerated models. The characteristics of the jerk and snap parameters have been investigated. Our model provides an effective description of the Universe's evolutionary history and fits well with contemporary cosmic data.

Topics & Concepts

PhysicsSingularityBig RipCosmologyDark energyUniverseTheoretical physicsDeceleration parameterf(R) gravityCosmological modelMathematical physicsMetric expansion of spaceAstrophysicsMathematicsQuantum gravityQuantum mechanicsMathematical analysisQuantumCosmology and Gravitation TheoriesBlack Holes and Theoretical PhysicsAdvanced Differential Geometry Research
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