English

Constraining the Baryonic Feedback with Cosmic Shear Using the DES Year-3 Small-Scale Measurements

Cosmology and Nongalactic Astrophysics 2022-11-16 v1

Abstract

We use the small scales of the Dark Energy Survey (DES) Year-3 cosmic shear measurements, which are excluded from the DES Year-3 cosmological analysis, to constrain the baryonic feedback. To model the baryonic feedback, we adopt a baryonic correction model and use the numerical package \texttt{Baccoemu} to accelerate the evaluation of the baryonic nonlinear matter power spectrum. We design our analysis pipeline to focus on the constraints of the baryonic suppression effects, utilizing the implication given by a principal component analysis on the Fisher forecasts. Our constraint on the baryonic effects can then be used to better model and ameliorate the effects of baryons in producing cosmological constraints from the next generation large-scale structure surveys. We detect the baryonic suppression on the cosmic shear measurements with a 2σ\sim 2 \sigma significance. The characteristic halo mass for which half of the gas is ejected by baryonic feedback is constrained to be Mc>1013.2h1MM_c > 10^{13.2} h^{-1} M_{\odot} (95\% C.L.). The best-fit baryonic suppression is 5%\sim 5\% at k=1.0Mpc h1k=1.0 {\rm Mpc}\ h^{-1} and 15%\sim 15\% at k=5.0Mpc h1k=5.0 {\rm Mpc} \ h^{-1}. Our findings are robust with respect to the assumptions about the cosmological parameters, specifics of the baryonic model, and intrinsic alignments.

Keywords

Cite

@article{arxiv.2206.08591,
  title  = {Constraining the Baryonic Feedback with Cosmic Shear Using the DES Year-3 Small-Scale Measurements},
  author = {A. Chen and G. Aricò and D. Huterer and R. Angulo and N. Weaverdyck and O. Friedrich and L. F. Secco and C. Hernández-Monteagudo and A. Alarcon and O. Alves and A. Amon and F. Andrade-Oliveira and E. Baxter and K. Bechtol and M. R. Becker and G. M. Bernstein and J. Blazek and A. Brandao-Souza and S. L. Bridle and H. Camacho and A. Campos and A. Carnero Rosell and M. Carrasco Kind and R. Cawthon and C. Chang and R. Chen and P. Chintalapati and A. Choi and J. Cordero and M. Crocce and M. E. S. Pereira and C. Davis and J. DeRose and E. Di Valentino and H. T. Diehl and S. Dodelson and C. Doux and A. Drlica-Wagner and K. Eckert and T. F. Eifler and F. Elsner and J. Elvin-Poole and S. Everett and X. Fang and A. Ferté and P. Fosalba and M. Gatti and E. Gaztanaga and G. Giannini and D. Gruen and R. A. Gruendl and I. Harrison and W. G. Hartley and K. Herner and K. Hoffmann and H. Huang and E. M. Huff and B. Jain and M. Jarvis and N. Jeffrey and T. Kacprzak and E. Krause and N. Kuropatkin and P. -F. Leget and P. Lemos and A. R. Liddle and N. MacCrann and J. McCullough and J. Muir and J. Myles and A. Navarro-Alsina and Y. Omori and S. Pandey and Y. Park and A. Porredon and J. Prat and M. Raveri and A. Refregier and R. P. Rollins and A. Roodman and R. Rosenfeld and A. J. Ross and E. S. Rykoff and S. Samuroff and C. Sánchez and J. Sanchez and I. Sevilla-Noarbe and E. Sheldon and T. Shin and A. Troja and M. A. Troxel and I. Tutusaus and T. N. Varga and R. H. Wechsler and B. Yanny and B. Yin and Y. Zhang and J. Zuntz and M. Aguena and J. Annis and D. Bacon and E. Bertin and S. Bocquet and D. Brooks and D. L. Burke and J. Carretero and C. Conselice and M. Costanzi and L. N. da Costa and J. De Vicente and S. Desai and P. Doel and I. Ferrero and B. Flaugher and J. Frieman and J. García-Bellido and D. W. Gerdes and T. Giannantonio and J. Gschwend 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 M. March and J. L. Marshall and P. Melchior and F. Menanteau and R. Miquel and J. J. Mohr and R. Morgan and F. Paz-Chinchón and A. Pieres and E. Sanchez and M. Smith and E. Suchyta and M. E. C. Swanson and G. Tarle and D. Thomas and C. To},
  journal= {arXiv preprint arXiv:2206.08591},
  year   = {2022}
}

Comments

20 pages, 10 figures. DES Collaboration, Year-3 analysis