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March 26, 20260 citationsOpen Access

The Hubble Tension as a Regime-Dependent Inference Problem: Toward a Multi-Scale Stability Interpretation

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JSJohn Richard SmithSHSHAI / HATI

Key Points

  • The study aims to understand the discrepancy in Hubble constant measurements across different cosmological regimes.
  • Compiles 14 measurements of the Hubble constant from various probes.
  • Employs weighted F-test to evaluate differences between measurement classes.
  • Utilizes Bayesian model comparison to support multi-regime model over single value.
  • Identifies that H0 values cluster by probe class.
  • Statistical analysis yields F = 15.7, p < 0.001, favoring multi-regime model.
  • Bayesian model comparison shows ∆BIC = 30.7, indicating strong preference for varied H0 values.

Abstract

ABSTRACTThe persistent discrepancy between early-universe and late-universe determinations of the Hubble constant H0 isconventionally attributed to systematic measurement error or to extensions of ΛCDM. We propose a complementaryinterpretive framework: that part of the tension may arise from applying a globally parameterised expansion modelto observations sampling distinct dynamical regimes across scale. Under this interpretation, different measurementpipelines probe regimes characterised by differing balances between large-scale coherence and local inhomogeneity,leading to regime-dependent effective values of H0. We compile 14 representative measurements and show that H0values cluster by probe class, with a weighted F -test (F = 15.7, p < 0.001) and Bayesian model comparison (∆BIC =30.7) strongly favouring a multi-regime model over a single global value. This work does not introduce new dynamics,but reframes the inference structure of the tension, identifies testable consequences including a prospective predictionfrom recent JWST data, and is intended as a conceptual complement to existing approaches including backreactionand scale-dependent expansion models.Key words: cosmology: observations – cosmological parameters – large-scale structure of Universe – methods: statis-tical

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Cite This Study

Smith et al. (2026) studied this question.

synapsesocial.com/papers/69c4cd73fdc3bde448919c5fhttps://doi.org/10.5281/zenodo.19199739
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