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Barrow Entropy Cosmology: an observational approach with a hint of stability analysis

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arxiv 2108.10998 v1 pith:QECCJ2JR submitted 2021-08-25 astro-ph.CO gr-qc

Barrow Entropy Cosmology: an observational approach with a hint of stability analysis

classification astro-ph.CO gr-qc
keywords analysiscosmologicaldynamicalobservationalapproachbarrowcosmologyentropy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this work, we use an observational approach and dynamical system analysis to study the cosmological model recently proposed by Saridakis (2020), which is based on the modification of the entropy-area black hole relation proposed by Barrow (2020). The Friedmann equations governing the dynamics of the Universe under this entropy modification can be calculated through the gravity-thermodynamics conjecture. We investigate two models, one considering only a matter component and the other including matter and radiation, which have new terms compared to the standard model sourcing the late cosmic acceleration. A Bayesian analysis is performed in which we use five cosmological observations (observational Hubble data, type Ia supernovae, HII galaxies, strong lensing systems, and baryon acoustic oscillations) to constrain the free parameters of both models. From a joint analysis, we obtain constraints that are consistent with the standard cosmological paradigm within $2\sigma$ confidence level. In addition, a complementary dynamical system analysis using local and global variables is developed which allows obtaining a qualitative description of the cosmology. As expected, we found that the dynamical equations have a de Sitter solution at late times.

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Cited by 2 Pith papers

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    gr-qc 2026-07 conditional novelty 6.0

    A scale-dependent Barrow-Tsallis entropy cosmology fits cosmic data but is statistically disfavored versus ΛCDM, with only a modest and partially circular Hubble-tension 'alleviation'.

  2. Phantom-Divide Crossing in Barrow-Tsallis Holographic Dark Energy with a Scale-Dependent Barrow Exponent

    gr-qc 2026-07 conditional novelty 5.0

    For generalized-entropy holographic dark energy with a future-event-horizon cutoff, the phantom-divide crossing on the kinematic branch is unique, quintessence-to-phantom, and fixes the local entropy-scaling dimension...