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The Hubble tension from the standpoint of quantum cosmology

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arxiv 2211.16394 v3 pith:SHJBD7L4 submitted 2022-11-29 gr-qc astro-ph.CO

classification gr-qcastro-ph.CO
keywords quantumhubblecomponentcosmologydensityenergylatemodel
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abstract

The Hubble tension is analyzed in the framework of quantum cosmological approach. It is found that there arises a new summand in the expression for the total energy density stipulated by the quantum Bohm potential. This additional energy density acts similarly to a stiff matter component, modifying the expansion history of the early universe and decaying with scale factor $a$ as $a^{-6}$, faster than radiation, in late universe. Taking account of this matter-energy component of quantum nature can, in principle, eliminate a discrepancy between the direct late time model-independent measurements of the Hubble constant and its indirect model dependent estimates. The considered model allows one to extend the standard cosmology to quantum sector.

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  1. Beyond LambdaCDM: How the Hubble tension challenges early universe physics

    astro-ph.CO 2025-07 reject novelty 2.0 of 10

    An Early Dark Energy model can fit H0=73.56 km/s/Mpc only with a high EDE fraction and high peak redshift, while Bayesian evidence favors the model only in a narrow, finely-tuned parameter space.

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