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Theoretical Priors and the Dark Energy Equation of State

1 Pith paper cite this work. Polarity classification is still indexing.

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abstract

We revisit the theoretical priors used for inferring Dark Energy (DE) parameters. Any DE model must have some form of a tracker mechanism such that it behaved as matter or radiation in the past. Otherwise, the model is fine-tuned. We construct a model-independent parametrization that takes this prior into account and allows for a relatively sudden transition between radiation/matter to DE behavior. We match the parametrization with current data, and deduce that the adiabatic and effective sound speeds of DE play an important role in inferring the cosmological parameters. We find that there is a preferred transition redshift of $1+z\simeq 29-30$, and some reduction in the Hubble and Large Scale Structure tensions.

fields

astro-ph.CO 1

years

2025 1

verdicts

REJECT 1

representative citing papers

Evidence for non-cold dark matter from DESI DR2 measurements

astro-ph.CO · 2025-04-19 · reject · novelty 5.0

DESI BAO plus DES-Y5 supernovae favor a slightly negative dark matter equation of state at 2.4 sigma, but combining with Planck moves the best fit to a positive value, exposing a dataset-dependent tension.

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  • Evidence for non-cold dark matter from DESI DR2 measurements astro-ph.CO · 2025-04-19 · reject · none · ref 63 · internal anchor

    DESI BAO plus DES-Y5 supernovae favor a slightly negative dark matter equation of state at 2.4 sigma, but combining with Planck moves the best fit to a positive value, exposing a dataset-dependent tension.