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arXiv:2507.13811·v2·Cosmology and Nongalactic Astrophysics

Testing the cosmic distance duality relation with baryon acoustic oscillations and supernovae data

Tian-Nuo Li🇺🇸 · Guo-Hong Du🇺🇸 · Peng-Ju Wu🇨🇳 · Jing-Zhao Qi🇺🇸 · Jing-Fei Zhang🇺🇸 · Xin Zhang🇺🇸

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Abstract

One of the most fundamental relationships in modern cosmology is the cosmic distance duality relation (CDDR), which describes the relationship between the angular diameter distance () and the luminosity distance (), and is expressed as: . In this work, we conduct a comprehensive test of the CDDR by combining baryon acoustic oscillation (BAO) data from the SDSS and DESI surveys with type Ia supernova (SN) data from PantheonPlus and DESY5. We utilize an artificial neural network approach to match the SN and BAO data at the same redshift. To explore potential violations of the CDDR, we consider three different parameterizations: (i) ; (ii) ; (iii) . Our results indicate that the calibration of the SN absolute magnitude plays a crucial role in testing potential deviations from the CDDR, as there exists a significant negative correlation between and . For PantheonPlus analysis, when is treated as a free parameter, no evidence of CDDR violation is found. In contrast, fixing to the prior with mag leads to a deviation at approximately the level, while fixing to the prior with mag remains in agreement with the CDDR. Furthermore, overall analyses based on the SDSS+DESY5 and DESI+DESY5 data consistently show no evidence of the deviation from the CDDR.

Comments: 12 pages, 5 figures

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