English

Second Order Gravitational Effects on CMB Temperature Anisotropy in Lambda dominated flat universes

Astrophysics 2014-09-08 v2 General Relativity and Quantum Cosmology

Abstract

We study second order gravitational effects of local inhomogeneities on the cosmic microwave background radiation in flat universes with matter and a cosmological constant Λ\Lambda. We find that the general relativistic correction to the Newtonian approximation is negligible at second order provided that the size of the inhomogeneous region is sufficiently smaller than the horizon scale. For a spherically symmetric top-hat type quasi-linear perturbation, the first order temperature fluctuation corresponding to the linear integrated Sachs-Wolfe (ISW) effect is enhanced(suppressed) by the second order one for a compensated void(lump). As a function of redshift of the local inhomogeneity, the second order temperature fluctuations due to evolution of the gravitational potential have a peak before the matter-Λ\Lambda equality epoch for a fixed comoving size and a density contrast. The second order gravitational effects from local quasi-linear inhomogeneities at a redshift z~1 may significantly affect the cosmic microwave background.

Keywords

Cite

@article{arxiv.0712.1291,
  title  = {Second Order Gravitational Effects on CMB Temperature Anisotropy in Lambda dominated flat universes},
  author = {Kenji Tomita and Kaiki Taro Inoue},
  journal= {arXiv preprint arXiv:0712.1291},
  year   = {2014}
}

Comments

16 pages, 8 figures, No major change. Eqs (5.6) and (5.7) are modified to include uncompensating cases

R2 v1 2026-06-21T09:52:01.732Z