In this work, we test the cosmic distance duality relation (CDDR) by comparing the angular diameter distance (ADD) derived from the transverse Baryon Acoustic Oscillations (BAO) data with the luminosity distance (LD) from the Pantheon type Ia supernova (SNIa) sample. The binning method and Gaussian process are employed to match ADD data with LD data at the same redshift. First, we use nonparametric and parametric methods to investigate the impact of the specific prior values of the absolute magnitude MB from SNIa observations and the sound horizon scale rs from transverse BAO measurements on the CDDR tests. The results obtained from the parametric and non-parametric methods indicate that specific prior values of MB and rs lead to significant biases on the CDDR test. Then, to avoid these biases, we propose a method independent of MB and rs to test CDDR by considering the fiducial value of κ≡105MBrs as a nuisance parameter and then marginalizing its influence with a flat prior in the analysis. No violation of the CDDR is found, and the transverse BAO measurement can be used as a powerful tool to verify the validity of CDDR in the cosmological-model-independent method.
@article{arxiv.2407.12250,
title = {Testing the cosmic distance duality relation with Type Ia supernova and transverse BAO measurements},
author = {Min Wang and Xiangyun Fu and Bing Xu and Yang Huang and Ying Yang and Zhenyan Lu},
journal= {arXiv preprint arXiv:2407.12250},
year = {2024}
}