English

Beyond the 3rd moment: A practical study of using lensing convergence CDFs for cosmology with DES Y3

Cosmology and Nongalactic Astrophysics 2023-08-09 v1

Abstract

Widefield surveys of the sky probe many clustered scalar fields -- such as galaxy counts, lensing potential, gas pressure, etc. -- that are sensitive to different cosmological and astrophysical processes. Our ability to constrain such processes from these fields depends crucially on the statistics chosen to summarize the field. In this work, we explore the cumulative distribution function (CDF) at multiple scales as a summary of the galaxy lensing convergence field. Using a suite of N-body lightcone simulations, we show the CDFs' constraining power is modestly better than that of the 2nd and 3rd moments of the field, as they approximately capture the information from all moments of the field in a concise data vector. We then study the practical aspects of applying the CDFs to observational data, using the first three years of the Dark Energy Survey (DES Y3) data as an example, and compute the impact of different systematics on the CDFs. The contributions from the point spread function are 2-3 orders of magnitude below the cosmological signal, while those from reduced shear approximation contribute 1%\lesssim 1\% to the signal. Source clustering effects and baryon imprints contribute 110%1-10\%. Enforcing scale cuts to limit systematics-driven biases in parameter constraints degrades these constraints a noticeable amount, and this degradation is similar for the CDFs and the moments. We also detect correlations between the observed convergence field and the shape noise field at 13σ13\sigma. We find that the non-Gaussian correlations in the noise field must be modeled accurately to use the CDFs, or other statistics sensitive to all moments, as a rigorous cosmology tool.

Keywords

Cite

@article{arxiv.2308.03863,
  title  = {Beyond the 3rd moment: A practical study of using lensing convergence CDFs for cosmology with DES Y3},
  author = {D. Anbajagane and C. Chang and A. Banerjee and T. Abel and M. Gatti and V. Ajani and A. Alarcon and A. Amon and E. J. Baxter and K. Bechtol and M. R. Becker and G. M. Bernstein and A. Campos and A. Carnero Rosell and M. Carrasco Kind and R. Chen and A. Choi and C. Davis and J. DeRose and H. T. Diehl and S. Dodelson and C. Doux and A. Drlica-Wagner and K. Eckert and J. Elvin-Poole and S. Everett and A. Fert'e and D. Gruen and R. A. Gruendl and I. Harrison and W. G. Hartley and E. M. Huff and B. Jain and M. Jarvis and N. Jeffrey and T. Kacprzak and N. Kokron and N. Kuropatkin and P. -F. Leget and N. MacCrann and J. McCullough and J. Myles and A. Navarro-Alsina and S. Pandey and J. Prat and M. Raveri and R. P. Rollins and A. Roodman and E. S. Rykoff and C. Sanchez and L. F. Secco and I. Sevilla-Noarbe and E. Sheldon and T. Shin and M. A. Troxel and I. Tutusaus and L. Whiteway and B. Yanny and B. Yin and Y. Zhang and T. M. C. Abbott and S. Allam and M. Aguena and O. Alves and F. Andrade-Oliveira and J. Annis and D. Bacon and J. Blazek and D. Brooks and R. Cawthon and L. N. da Costa and M. E. S. Pereira and T. M. Davis and S. Desai and P. Doel and I. Ferrero and J. Frieman and G. Giannini and G. Gutierrez and S. R. Hinton and D. L. Hollowood and K. Honscheid and D. J. James and K. Kuehn and O. Lahav and J. L. Marshall and J. Mena-Fernandez and F. Menanteau and R. Miquel and A. Palmese and A. Pieres and A. A. Plazas Malag'on and K. Reil and E. Sanchez and M. Smith and M. E. C. Swanson and G. Tarle and P. Wiseman},
  journal= {arXiv preprint arXiv:2308.03863},
  year   = {2023}
}

Comments

21 pages, 12 figures