English

Revisiting scalar and tensor perturbations in a nonlocal gravity

General Relativity and Quantum Cosmology 2020-01-06 v1

Abstract

Nonlocal RT gravity is a successful modified gravity theory, which not only explains the late-time cosmic acceleration but also behaves well in the solar system. Previous analysis generally assumes the auxiliary field SiS_i vanishes at the cosmic background. However, we find the background SiS_i is proportional to a2a^2 with the expansion of the universe. Then we discuss the influence of the nonzero background SiS_i on the cosmic background evolution, the scalar and tensor perturbations. We find the cosmic background evolution is independent of SiS_i, and the influence of the nonzero background SiS_i on the weak field limit at solar system scales is negligible. For the tensor perturbation, we find the only possible observable effect is the influence of nonzero background SiS_i on the LIGO gravitational wave amplitude and also luminosity distance. Future high redshift gravitational wave observations could be used to constrain the background value of SiS_i.

Keywords

Cite

@article{arxiv.2001.00772,
  title  = {Revisiting scalar and tensor perturbations in a nonlocal gravity},
  author = {S. X. Tian and Zong-Hong Zhu},
  journal= {arXiv preprint arXiv:2001.00772},
  year   = {2020}
}

Comments

5 pages, PRD in press

R2 v1 2026-06-23T13:02:08.618Z