Loop Quantum Corrections to Statefinder Parameters of Dark Energy
Mubasher Jamil, D. Momeni, Ratbay Myrzakulov

TL;DR
This paper derives explicit forms of statefinder parameters in loop quantum cosmology for holographic and new-agegraphic dark energy models and explores their cosmological implications through numerical analysis.
Contribution
It introduces explicit statefinder parameters within loop quantum cosmology for specific dark energy models, advancing the understanding of quantum gravity effects on cosmic acceleration.
Findings
Numerical analysis reveals distinctive behaviors of statefinder parameters in LQC.
Results suggest quantum corrections influence dark energy diagnostics.
Findings aid in differentiating dark energy models with quantum gravity considerations.
Abstract
In this short letter, we presented the explicit forms of the statefinder parameters for the Friedmann-Robertson-Walker (FRW) Universe in the loop quantum cosmology (LQC) for Holographic dark energy and New-Agegraphic dark energy. Numerically we investigated cosmological implications of these parameters for models of dark energy.
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