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Angular Cross-Correlation of Galaxies: A Probe of Gravitational Lensing by Large-Scale Structure

Astrophysics 2020-11-25 v2

Abstract

The angular cross-correlation between two galaxy samples separated in redshift is shown to be a useful measure of weak lensing by large-scale structure. Angular correlations in faint galaxies arise due to spatial clustering of the galaxies as well as gravitational lensing by dark matter along the line-of-sight. The lensing contribution to the 2-point auto-correlation function is typically small compared to the gravitational clustering. However the cross-correlation between two galaxy samples is nearly unaffected by gravitational clustering provided their redshift distributions do not overlap. The cross-correlation is then induced by magnification bias due to lensing by large-scale structure. We compute the expected amplitude of the cross-correlation for popular theoretical models of structure formation. For two populations with mean redshifts of 0.3\simeq 0.3 and 1, we find a cross-correlation signal of 1\simeq 1% on arcminute scales and 3\simeq 3% on a few arcseconds. The dependence on the cosmological parameters Ω\Omega and Λ\Lambda, on the dark matter power spectrum and on the bias factor of the foreground galaxy population is explored.

Keywords

Cite

@article{arxiv.astro-ph/9709159,
  title  = {Angular Cross-Correlation of Galaxies: A Probe of Gravitational Lensing by Large-Scale Structure},
  author = {R. Moessner and Bhuvnesh Jain},
  journal= {arXiv preprint arXiv:astro-ph/9709159},
  year   = {2020}
}

Comments

7 pages, 4 figures included, revised with additions to formalism and discussion, matches published version