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Kunj Panchal

Publications and source records attributed to Kunj Panchal.

2 recordsLinked to original sources

Comparison of $R_h=ct$ and $Λ$CDM using DESI DR1 measurements

We use DESI DR1 BAO measurements of the ratio of tranvserse comoving distance to Hubble distance in order to test the compatibility of $R_h=ct$ over flat $Λ$CDM. For this purpose, we used Bayesian model selection to evaluate the efficacy of these models given the observed data. When we consider the BAO measurements up to redshift of 1.3, both models are equally favored. However, when we consider the Lyman-$α$ QSO measurement at redshift of 2.33, we find Bayes factors of greater than 100 for flat $Λ$CDM over $R_h=ct$ using two different priors for $Ω_m$, indicating that $Λ$CDM is decisively favored over $R_h=ct$. The same is the case when we combine all the measurements. Therefore, the DESI DRI measurements rule out $R_h=ct$ cosmology, albeit this is driven by the Lyman-$α$ QSO measurement at $z=2.33$.

astro-ph.CO

Comparison of $Λ$CDM and $R_h = ct$ with updated galaxy cluster $f_{gas}$ measurements using Bayesian inference

We use updated gas mass fraction measurements of 44 massive dynamically relaxed galaxy clusters collated in arXiv:2111.09343 to distinguish between the standard $Λ$CDM model and $R_h=ct$ universe. For this purpose, we use Bayesian model selection to compare the efficacy of both these cosmological models given the data. The gas mass fraction is modeled using both cosmology-dependent terms and also astrophysical parameters, which account for the variation with cluster mass and redshift. We used two different prior choices for some of the astrophysical parameters. We find a Bayes factors of 50 and 5 for $Λ$CDM as compared to $R_h=ct$ for these two prior choices. This implies that $Λ$CDM is favored compared to $R_h=ct$ with significance ranging from substantial to very strong.

astro-ph.CO