中文

CMBR constraints on $R^2$ gravity

天体物理学 2013-06-11 v1 广义相对论与量子宇宙学 高能物理 - 唯象学 高能物理 - 理论

摘要

Considering the inflation model based on a f(R)f(R) gravity theory, we obtain several important constraints from the large angular scale CMBR observations. First, the ordinary slow-roll assumption during the inflation together with Harrison-Zel'dovich spectral conditions chooses R2R^2 gravity as a unique candidate. Second, the R2R^2 gravity leads to specific near scale-invariant Harrison-Zel'dovich spectra both for the scalar and the tensor perturbations. Third, using the COBE-DMR data we derive the strong constraints on the coupling constant and the energy scale during the inflation. Also, our result shows the gravitational wave contribution to the CMBR anisotropy is negligible. So, the future observation can provide the strong constraints on the inflation model based on R2R^2 gravity. This is a summary of a talk presented in COSMO-01, and the more completed published version can be found in astro-ph/0102423.

关键词

引用

@article{arxiv.astro-ph/0201462,
  title  = {CMBR constraints on $R^2$ gravity},
  author = {Hyerim Noh},
  journal= {arXiv preprint arXiv:astro-ph/0201462},
  year   = {2013}
}

备注

summary of a talk presented in "COSMO-01 Particle physics and the early universe"