Constraints on Tsallis cosmology using recent low and high redshift measurements

M. L. Mendoza-Martínez, A. Cervantes-Contreras, J. J. Trejo-Alonso, A. Hernandez-Almada

The European Physical Journal C(2024)

引用 0|浏览1
暂无评分
摘要
Recently Tsallis cosmology has been presented as a novel proposal for alleviating both H_0 and σ _8 tensions. Hence a universe filled with matter and radiation as perfect fluids and considering the Tsallis entropy is confronted using recent cosmological measurements coming from cosmic chronometers, type Ia supernovae, hydrogen II galaxies, quasars, and baryon acoustic oscillations. Following a Bayesian Markov Chain Monte Carlo analysis and combining the samples, we constrain the main characteristic parameters α = 1.031^+0.054_-0.051 and δ = 1.005^+0.001_-0.001 where the uncertainties are 1σ confidence level. Additionally, we estimate the current deceleration parameter q_0=-0.530^+0.018_-0.017 , the deceleration-acceleration transition redshift z_T=0.632^+0.028_-0.028 and the age of the universe τ _U = 12.637^+0.067_-0.066 Gyrs which are in agreement with the standard cosmology ( Λ CDM) within 1.5σ . Furthermore, we find that the dark energy equation of state is consistent with both phantom and quintessence behaviors within 1σ in the past and converging to Λ CDM in the future. Additionally, we find agreement values of H_0 within 1σ with the SH0ES values when the CMB distance priors are added to the analysis, suggesting that H_0 tension could be alleviated. Finally, Tsallis cosmology is preferred over Λ CDM by the combined data that motives further studies at the perturbation level.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要