Cosmological shocks around galaxy clusters: A coherent investigation with DES, SPT & ACT
Abstract
We search for signatures of cosmological shocks in gas pressure profiles of galaxy clusters using the cluster catalogs from three surveys: the Dark Energy Survey (DES) Year 3, the South Pole Telescope (SPT) SZ survey, and the Atacama Cosmology Telescope (ACT) data releases 4, 5, and 6, and using thermal Sunyaev-Zeldovich (SZ) maps from SPT and ACT. The combined cluster sample contains around clusters with mass and redshift ranges and , and the total sky coverage of the maps is . We find a clear pressure deficit at in SZ profiles around both ACT and SPT clusters, estimated at significance, which is qualitatively consistent with a shock-induced thermal non-equilibrium between electrons and ions. The feature is not as clearly determined in profiles around DES clusters. We verify that measurements using SPT or ACT maps are consistent across all scales, including in the deficit feature. The SZ profiles of optically selected and SZ-selected clusters are also consistent for higher mass clusters. Those of less massive, optically selected clusters are suppressed on small scales by factors of 2-5 compared to predictions, and we discuss possible interpretations of this behavior. An oriented stacking of clusters -- where the orientation is inferred from the SZ image, the brightest cluster galaxy, or the surrounding large-scale structure measured using galaxy catalogs -- shows the normalization of the one-halo and two-halo terms vary with orientation. Finally, the location of the pressure deficit feature is statistically consistent with existing estimates of the splashback radius.
Keywords
Cite
@article{arxiv.2310.00059,
title = {Cosmological shocks around galaxy clusters: A coherent investigation with DES, SPT & ACT},
author = {D. Anbajagane and C. Chang and E. J. Baxter and S. Charney and M. Lokken and M. Aguena and S. Allam and O. Alves and A. Amon and R. An and F. Andrade-Oliveira and D. Bacon and N. Battaglia and K. Bechtol and M. R. Becker and B. A. Benson and G. M. Bernstein and L. Bleem and S. Bocquet and J. R. Bond and D. Brooks and A. Carnero Rosell and M. Carrasco Kind and R. Chen and A. Choi and M. Costanzi and T. M. Crawford and M. Crocce and L. N. da Costa and M. E. S. Pereira and T. M. Davis and J. De Vicente and S. Desai and M. J. Devlin and H. T. Diehl and P. Doel and C. Doux and A. Drlica-Wagner and J. Elvin-Poole and I. Ferrero and A. Ferte and B. Flaugher and P. Fosalba and D. Friedel and J. Frieman and J. Garcia-Bellido and M. Gatti and G. Giannini and S. Grandis and D. Gruen and R. A. Gruendl and G. Gutierrez and I. Harrison and J. C. Hill and M. Hilton and S. R. Hinton and D. L. Hollowood and K. Honscheid and B. Jain and D. J. James and M. Jarvis and K. Kuehn and M. Lin and N. MacCrann and J. L. Marshall and J. McCullough and J. J. McMahon and J. Mena-Fernandez and F. Menanteau and R. Miquel and K. Moodley and T. Mroczkowski and J. Myles and S. Naess and A. Navarro-Alsina and R. L. C. Ogando and L. A. Page and A. Palmese and S. Pandey and B. Patridge and A. Pieres and A. A. Plazas Malagon and A. Porredon and J. Prat and C. Reichardt and K. Reil and M. Rodriguez-Monroy and R. P. Rollins and A. K. Romer and E. S. Rykoff and E. Sanchez and C. Sanchez and D. Sanchez Cid and E. Schaan and M. Schubnell and L. F. Secco and I. Sevilla-Noarbe and E. Sheldon and T. Shin and C. Sifon and M. Smith and S. T. Staggs and E. Suchyta and M. E. C. Swanson and G. Tarle and C. To and M. A. Troxel and I. Tutusaus and E. M. Vavagiakis and N. Weaverdyck and J. Weller and P. Wiseman and E. J. Wollack and B. Yanny},
journal= {arXiv preprint arXiv:2310.00059},
year = {2023}
}
Comments
[v2]: Version accepted to MNRAS