cosmology

Signatures of Modified Gravity on Linear Scales in a Dynamical Dark Energy Background

arXiv:2605.22309

summary

The paper studies how possible deviations from General Relativity on linear scales influence cosmic structure growth in a universe with dynamical dark energy (CPL model), and uses CMB, BAO, supernova and redshift‑space distortion data to constrain the characteristic scale of these modified‑gravity effects to be below ~150 Mpc (best fit ~40 Mpc).

Abstract

Cosmological data from the cosmic microwave background (CMB), baryon acoustic oscillations, and Type Ia supernovae suggest that the component driving the accelerated expansion of the Universe may be dynamical at the - CL. The best-fit CPL model produces a level of cosmic structure similar to that of CDM, with both models exhibiting mild tension with redshift-space distortion data. In this {\it Letter}, we parametrize possible departures of the effective gravitational coupling from Newton's constant in the late Universe, below a comoving scale , using two redshift bins, and . We then determine the optimal values of and the amplitude of these deviations from General Relativity, assuming a background with dynamical dark energy in CPL form. We find that, in order to achieve the required suppression of structure growth at low redshifts while remaining consistent with CMB constraints -- primarily from the late-time ISW effect at low and lensing at high -- we must require modified gravity effects to have a characteristic scale of (95\% CL). This places the relevant scales squarely within the range probed by galaxy surveys. The best-fit value is , well below the 95\% CL upper limit. Using Planck PR4, DESI DR2, Pantheon+ (or DES-Dovekie) and redshift-space distortions data we confirm that a CPL background with standard gravity is moderately preferred over CDM; this preference strengthens to a mildly strong level when modified gravity effects are included. This enhancement leaves the CPL parameters largely unchanged, but shifts them slightly further into the quintom region.

15pages, 7 figures

Topics & keywords

#modified gravity#dark energy#large-scale structure#cosmic microwave background#parameter estimationCPL parametrizationeffective gravitational couplingISW effectredshift-space distortionsλ_c scalePlanck PR4
Signatures of Modified Gravity on Linear Scales in a Dynamical Dark Energy Background · wovepaper