English

Bulk flows and CMB dipole anisotropy in cosmological void models

Astrophysics 2009-10-31 v3

Abstract

The observational behavior of spherically symmetric inhomogeneous cosmological models is studied, which consist of inner and outer homogeneous regions connected by a shell or an intermediate self-similar region. It is assumed that the present matter density parameter in the inner region is smaller than that in the outer region, and the present Hubble parameter in the inner region is larger than that in the outer region. Then galaxies in the inner void-like region can be seen to have a bulk motion relative to matter in the outer region, when we observe them at a point O deviated from the center C of the inner region. Their velocity vpv_p in the CD direction is equal to the difference of two Hubble parameters multiplied by the distance between C and O. It is found also that the velocity vdv_d corresponding to CMB dipole anisotropy observed at O is by a factor 10\approx 10 small compared with vpv_p. This behavior of vdv_d and vpv_p may explain the puzzling situation of the cosmic flow of cluster galaxies, when the radius of the inner region and the distance CD are about 200 h1h^{-1} Mpc and 40 h1h^{-1} Mpc, respectively (H0=100h1km/secMpc1H_0 = 100 h^{-1} km/sec Mpc^{-1}), and when the gaps of density and Hubble parameters are 0.5\approx 0.5 and 18%, respectively.

Keywords

Cite

@article{arxiv.astro-ph/9905278,
  title  = {Bulk flows and CMB dipole anisotropy in cosmological void models},
  author = {Kenji Tomita},
  journal= {arXiv preprint arXiv:astro-ph/9905278},
  year   = {2009}
}

Comments

27 pages, 8 postscript figures, Referencs were corrected and acknowledgements were added, Apj 529(2000) No.1 in press

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