English

Reconciling Hubble Constant Discrepancy from Holographic Dark Energy

Cosmology and Nongalactic Astrophysics 2021-01-04 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

Holographic dark energy (HDE) describes the vacuum energy in a cosmic IR region whose total energy saturates the limit of avoiding the collapse into a black hole. HDE predicts that the dark energy equation of the state transiting from greater than the 1-1 regime to less than 1-1, accelerating the Universe slower at the early stage and faster at the late stage. We propose the HDE as a new {\it physical} resolution to the Hubble constant discrepancy between the cosmic microwave background (CMB) and local measurements. With Planck CMB and galaxy baryon acoustic oscillation (BAO) data, we fit the HDE prediction of the Hubble constant as H0 ⁣=71.54±1.78kms1Mpc1H_0^{}\!=\, 71.54\pm1.78\,\mathrm{km\,s^{-1} Mpc^{-1}}, consistent with local H0H_0^{} measurements by LMC Cepheid Standards (R19) at 1.4σ1.4\sigma level. Combining Planck+BAO+R19, we find the HDE parameter c=0.51±0.02c=0.51\pm0.02 and H0 ⁣=73.12±1.14kms1Mpc1H_0^{}\! = 73.12\pm 1.14\,\mathrm{km \,s^{-1} Mpc^{-1}}, which fits cosmological data at all redshifts. Future CMB and large-scale structure surveys will further test the holographic scenario.

Keywords

Cite

@article{arxiv.2003.03602,
  title  = {Reconciling Hubble Constant Discrepancy from Holographic Dark Energy},
  author = {Wei-Ming Dai and Yin-Zhe Ma and Hong-Jian He},
  journal= {arXiv preprint arXiv:2003.03602},
  year   = {2021}
}

Comments

Published version in PRD Rapid Communication, 6 pages, 5 figures, 2 tables. All results and conclusions are unchanged, only minor refinements, references added