English

The Intrinsic Alignment of Red Galaxies in DES Y1 redMaPPer Galaxy Clusters

Cosmology and Nongalactic Astrophysics 2023-09-06 v2

Abstract

Clusters of galaxies are sensitive to the most nonlinear peaks in the cosmic density field. The weak gravitational lensing of background galaxies by clusters can allow us to infer their masses. However, galaxies associated with the local environment of the cluster can also be intrinsically aligned due to the local tidal gradient, contaminating any cosmology derived from the lensing signal. We measure this intrinsic alignment in Dark Energy Survey (DES) Year 1 redMaPPer clusters. We find evidence of a non-zero mean radial alignment of galaxies within clusters between redshift 0.1-0.7. We find a significant systematic in the measured ellipticities of cluster satellite galaxies that we attribute to the central galaxy flux and other intracluster light. We attempt to correct this signal, and fit a simple model for intrinsic alignment amplitude (AIAA_{\textrm{IA}}) to the measurement, finding AIA=0.15±0.04A_{\textrm{IA}}=0.15\pm 0.04, when excluding data near the edge of the cluster. We find a significantly stronger alignment of the central galaxy with the cluster dark matter halo at low redshift and with higher richness and central galaxy absolute magnitude (proxies for cluster mass). This is an important demonstration of the ability of large photometric data sets like DES to provide direct constraints on the intrinsic alignment of galaxies within clusters. These measurements can inform improvements to small-scale modeling and simulation of the intrinsic alignment of galaxies to help improve the separation of the intrinsic alignment signal in weak lensing studies.

Keywords

Cite

@article{arxiv.2302.12325,
  title  = {The Intrinsic Alignment of Red Galaxies in DES Y1 redMaPPer Galaxy Clusters},
  author = {C. Zhou and A. Tong and M. A. Troxel and J. Blazek and C. Lin and D. Bacon and L. Bleem and A. Carnero Rosell and C. Chang and M. Costanzi and J. DeRose and J. P. Dietrich and A. Drlica-Wagner and D. Gruen and R. A. Gruendl and B. Hoyle and M. Jarvis and N. MacCrann and B. Mawdsley and T. McClintock and P. Melchior and J. Prat and A. Pujol and E. Rozo and E. S. Rykoff and S. Samuroff and C. Sánchez and I. Sevilla-Noarbe and E. Sheldon and T. Shin and D. L. Tucker and T. N. Varga and B. Yanny and Y. Zhang and J. Zuntz and O. Alves and A. Amon and E. Bertin and D. Brooks and D. L. Burke and M. Carrasco Kind and L. N. da Costa and T. M. Davis and J. De Vicente and S. Desai and H. T. Diehl and P. Doel and S. Everett and I. Ferrero and B. Flaugher and J. Frieman and D. W. Gerdes and G. Gutierrez and S. R. Hinton and D. L. Hollowood and K. Honscheid and D. J. James and T. Jeltema and K. Kuehn and O. Lahav and M. Lima and J. L. Marshall and J. Mena-Fernández and F. Menanteau and R. Miquel and A. Palmese and F. Paz-Chinchón and A. Pieres and A. A. Plazas Malagón and A. Porredon and M. Raveri and A. K. Romer and E. Sanchez and M. Smith and M. Soares-Santos and E. Suchyta and M. E. C. Swanson and G. Tarle and C. To and N. Weaverdyck and J. Weller and P. Wiseman},
  journal= {arXiv preprint arXiv:2302.12325},
  year   = {2023}
}

Comments

14 pages, 13 figures. Accepted to MNRAS