Cosmological Reconstruction in Gravity: CDM Background and Matter-Sector Dependence
Abstract: In this work, we investigate the cosmological reconstruction of gravity, where is the non-metricity scalar and is the trace of the energy-momentum tensor. We consider the functional form and reconstruct explicit forms of corresponding to the CDM expansion history in Friedmann-Lemaître-Robertson-Walker (FLRW) universe. By employing the matter conservation equation and expressing the cosmological quantities in terms of , the reconstruction problem is formulated as a first-order linear differential equation for . Analytical solutions for are obtained for various matter configurations, including dust-like matter, a perfect fluid with equation-of-state parameter , and a nonisentropic perfect fluid with a time-dependent barotropic index. Additionally, an e-folding formulation of the reconstruction is considered to examine the cosmological evolution in terms of the e-folding parameter. The resulting forms of confirm that the CDM expansion history can be successfully realized within the framework across diverse matter sectors.
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