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Bouncing behavior in f(R,Lm) gravity: Phantom crossing and energy conditions

M. KoussourDepartment of Physics, University of Hassan II Casablanca, MoroccoN. MyrzakulovL. N. Gumilyov Eurasian National University, Astana 010008, KazakhstanJavlon RayimbaevNational University of Uzbekistan, Tashkent 100174, UzbekistanAlnadhief H. A. AlfedeelCentre for Space Research, North-West University, Potchefstroom 2520, South AfricaHatim Mohamed El-KhairDeanship of Scientific Research, Imam Mohammad Ibn Saud Islamic University, P. O. Box 5701, 11432, Riyadh, Saudi Arabia
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In this paper, we investigate the bouncing behavior of the universe within the framework of [Formula: see text] gravity, using a simple form of [Formula: see text] (where [Formula: see text] is a free model parameter) as previously studied. The model predicts a vanishing Hubble parameter in the early and late times, with the deceleration parameter approaching a specific limit at the bouncing point. The EoS parameter is observed to cross the phantom divide line ([Formula: see text]) near the bouncing point, indicating a significant transition from a contracting to an expanding phase. The model satisfies the necessary energy conditions for a successful bouncing scenario, with violations indicating exotic matter near the bouncing point. Stability conditions are satisfied for certain values of [Formula: see text] near the bouncing point, but potential instabilities in late-time evolution require further investigation. Finally, we conclude that the [Formula: see text] gravity model is promising for understanding the universe’s dynamics, especially during events like the bouncing phase.

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