English

A novel method for unbiased measurements of growth with cosmic shear

Cosmology and Nongalactic Astrophysics 2022-06-09 v1

Abstract

I present a new technique for the measurement of the growth of cosmic structures via the power spectrum of weak lensing cosmic shear. It is based on a template-fitting approach, where a redshift-dependent amplitude of lensing modulates a fixed template power spectrum. Such an amplitude, which is promoted to a free parameter and fit against tomographic cosmic shear data, reads D(z)σ8Ωm,0=:Ωσ8(z)D(z)\,\sigma_8\,\Omega_{{\rm m},0}=:\Omega\sigma_8(z), with D(z)D(z) the growth factor, σ8\sigma_8 a proxy for the overall amplitude of the matter power spectrum, and Ωm,0\Omega_{{\rm m},0} the present-day matter abundance. I show that this method is able to correctly reconstruct Ωσ8\Omega\sigma_8 at the per cent level across redshift, thus allowing us to measure the growth of structures unbiased by observing discrete tracers. Moreover, I only makes use of measurements on linear scales. The method is highly complementary to measurements of the bias and growth, bσ8(z)b\sigma_8(z) and fσ8(z)f\sigma_8(z), from galaxy clustering analysis. I also demonstrate that the method is robust against an incorrect choice of cosmological parameters in the template, thanks to the inclusion of an Alcock-Paczy\'nski parameter.

Keywords

Cite

@article{arxiv.2206.03499,
  title  = {A novel method for unbiased measurements of growth with cosmic shear},
  author = {Stefano Camera},
  journal= {arXiv preprint arXiv:2206.03499},
  year   = {2022}
}

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