English

Early dark energy, the Hubble-parameter tension, and the string axiverse

Cosmology and Nongalactic Astrophysics 2016-12-07 v2

Abstract

Precise measurements of the cosmic microwave background (CMB) power spectrum are in excellent agreement with the predictions of the standard Λ\LambdaCDM cosmological model. However, there is some tension between the value of the Hubble parameter H0H_0 inferred from the CMB and that inferred from observations of the Universe at lower redshifts, and the unusually small value of the dark-energy density is a puzzling ingredient of the model. In this paper, we explore a scenario with a new exotic energy density that behaves like a cosmological constant at early times and then decays quickly at some critical redshift zcz_c. An exotic energy density like this is motivated by some string-axiverse-inspired scenarios for dark energy. By increasing the expansion rate at early times, the very precisely determined angular scale of the sound horizon at decoupling can be preserved with a larger Hubble constant. We find, however, that the Planck temperature power spectrum tightly constrains the magnitude of the early dark-energy density and thus any shift in the Hubble constant obtained from the CMB. If the reionization optical depth is required to be smaller than the Planck 2016 2σ2\sigma upper bound τ0.0774\tau\lesssim 0.0774, then early dark energy allows a Hubble-parameter shift of at most 1.6 km~s1^{-1}~Mpc1^{-1} (at zc1585z_c\simeq 1585), too small to fully alleviate the Hubble-parameter tension. Only if τ\tau is increased by more than 5σ5\sigma can the CMB Hubble parameter be brought into agreement with that from local measurements. In the process, we derive strong constraints to the contribution of early dark energy at the time of recombination---it can never exceed 2%\sim2\% of the radiation/matter density for 10zc10510 \lesssim z_c \lesssim 10^5.

Keywords

Cite

@article{arxiv.1608.01309,
  title  = {Early dark energy, the Hubble-parameter tension, and the string axiverse},
  author = {Tanvi Karwal and Marc Kamionkowski},
  journal= {arXiv preprint arXiv:1608.01309},
  year   = {2016}
}

Comments

10 pages, 13 figures, 1 table