paper

Comment on Cosmological constraints on unimodular gravity models with diffusion (arXiv:2211.07424): thermodynamic inadmissibility of the H0 tension resolution mechanism

arXiv:2604.17523

Abstract

We show that the diffusion-based models proposed in Refs.~\cite{Perez2021,Landau2022} within the framework of Unimodular Gravity (UG) to alleviate the tension are incompatible with the second law of thermodynamics. Starting from the Gibbs equation for a pressureless matter fluid, we derive a general thermodynamic admissibility condition for the CDMdiffusion class in UG, demonstrating that the second law requires , independently of the specific form of the diffusion function . This condition implies that energy must flow from the effective cosmological term into the matter sector, rather than in the opposite direction. We then establish a no-go theorem: no choice of can simultaneously satisfy the second law and generate the growing effective cosmological term required to alleviate the tension. We confirm this result explicitly for the models of Perez, Sudarsky, and Wilson-Ewing~\cite{Perez2021} and Landau et al.~\cite{Landau2022}, noting that the former explicitly identify as a necessary feature of their proposal without addressing its thermodynamic implications. The incompatibility is therefore structural and applies to the entire class of CDMdiffusion models in UG with a pressureless matter component.

4 pages

Comment on Cosmological constraints on unimodular gravity models with diffusion (arXiv:2211.07424): thermodynamic inadmissibility of the H0 tension resolution mechanism · wovepaper