paper

Redshift-dependent Distance Duality Violation in Resolving Multidimensional Cosmic Tensions

arXiv:2511.02357

Abstract

In this work, we investigate whether violations of the distance-duality relation (DDR) can resolve the multidimensional cosmic tensions characterized by the and discrepancies. Using the Fisher-bias formalism, we reconstruct minimal, data-driven profiles that capture the late-time deviations required to reconcile early- and late-Universe calibrations. While a constant DDR offset preserves the Pantheon-inferred matter density --leaving its inconsistency with the Planck best-fit CDM model and weak-lensing surveys unresolved--a time-varying DDR substantially reduces cross-dataset inconsistencies and improves the global fit, yielding relative to CDM when the SH0ES prior is excluded. This result suggests that the discrepancy may represent indirect evidence for a time-varying DDR. A hybrid scenario combining a time-dependent DDR with a phantom-like dark energy transition achieves the most consistent global reconciliation, reducing the tension with DES-Y3 measurements to below . These findings indicate that a mild DDR violation, coupled with evolving dark energy, offers a coherent pathway toward jointly addressing the and tensions.

12pages,6figures

Redshift-dependent Distance Duality Violation in Resolving Multidimensional Cosmic Tensions · wovepaper