English

The Information Content of Projected Galaxy Fields

Cosmology and Nongalactic Astrophysics 2022-12-14 v2

Abstract

The power spectrum of the nonlinearly evolved large-scale mass distribution recovers only a minority of the information available on the mass fluctuation amplitude. We investigate the recovery of this information in 2D "slabs" of the mass distribution averaged over 100\approx100~h1h^{-1}Mpc along the line of sight, as might be obtained from photometric redshift surveys. We demonstrate a Hamiltonian Monte Carlo (HMC) method to reconstruct the non-Gaussian mass distribution in slabs, under the assumption that the projected field is a point-transformed Gaussian random field, Poisson-sampled by galaxies. When applied to the \textit{Quijote} NN-body suite at z=0.5z=0.5 and at a transverse resolution of 2~h1h^{-1}Mpc, the method recovers 30\sim 30 times more information than the 2D power spectrum in the well-sampled limit, recovering the Gaussian limit on information. At a more realistic galaxy sampling density of 0.010.01~h3h^3Mpc3^{-3}, shot noise reduces the information gain to a factor of 5 improvement over the power spectrum at resolutions of 4~h1h^{-1}Mpc or smaller.

Keywords

Cite

@article{arxiv.2111.13702,
  title  = {The Information Content of Projected Galaxy Fields},
  author = {Lucas Porth and Gary M. Bernstein and Robert E. Smith and Abigail J. Lee},
  journal= {arXiv preprint arXiv:2111.13702},
  year   = {2022}
}

Comments

13 pages, 11 figures. Matches published version

R2 v1 2026-06-24T07:53:34.639Z