4.6 Article

Precision cosmology with voids in the final BOSS data

出版社

IOP Publishing Ltd
DOI: 10.1088/1475-7516/2020/12/023

关键词

cosmic web; cosmological parameters from LSS; redshift surveys; galaxy clustering

资金

  1. Excellence Cluster ORIGINS - Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) [EXC-2094 | 390783311]
  2. NASA [15-WFIRST15-0008]
  3. ANR BIG4 project [ANR-16-CE230002]
  4. Simons Foundation
  5. Alfred P. Sloan Foundation
  6. National Science Foundation
  7. U.S. Department of Energy Office of Science
  8. University of Arizona
  9. Brazilian Participation Group
  10. Brookhaven National Laboratory
  11. Carnegie Mellon University
  12. University of Florida
  13. French Participation Group
  14. German Participation Group
  15. Harvard University
  16. Instituto de Astrofisica de Canarias
  17. Michigan State/Notre Dame/JINA Participation Group
  18. Johns Hopkins University
  19. Lawrence Berkeley National Laboratory
  20. Max Planck Institute for Astrophysics
  21. Max Planck Institute for Extraterrestrial Physics
  22. New Mexico State University
  23. New York University
  24. Ohio State University
  25. Pennsylvania State University
  26. University of Portsmouth
  27. Princeton University
  28. Spanish Participation Group
  29. University of Tokyo
  30. University of Utah
  31. Vanderbilt University
  32. University of Virginia
  33. University of Washington
  34. Yale University

向作者/读者索取更多资源

We report novel cosmological constraints obtained from cosmic voids in the final BOSS DR12 dataset. They arise from the joint analysis of geometric and dynamic distortions of average void shapes (i.e., the stacked void-galaxy cross-correlation function) in redshift space. Our model uses tomographic deprojection to infer real-space void profiles and self-consistently accounts for the Alcock-Paczynski (AP) effect and redshift-space distortions (RSD) without any prior assumptions on cosmology or structure formation. It is derived from first physical principles and provides an extremely good description of the data at linear perturbation order. We validate this model with the help of mock catalogs and apply it to the final BOSS data to constrain the RSD and AP parameters f/b and DAH/c, where f is the linear growth rate, b the linear galaxy bias, D-A the comoving angular diameter distance, H the Hubble rate, and c the speed of light. In addition, we include two nuisance parameters in our analysis to marginalize over potential systematics. We obtain f/b = 0.540 +/- 0.091 and DAH=c = 0.588 +/- 0.004 from the full void sample at a mean redshift of z = 0.51. In a at Lambda CDM cosmology, this implies Omega(m) = 0.312 +/- 0.020 for the present-day matter density parameter. When we use additional information from the survey mocks to calibrate our model, these constraints improve to f/b = 0.347 +/- 0.023, DAH/c = 0.588 +/- 0.003, and Omega(m) = 0.310 +/- 0.017. However, we emphasize that the calibration depends on the specific model of cosmology and structure formation assumed in the mocks, so the calibrated results should be considered less robust. Nevertheless, our calibration-independent constraints are among the tightest of their kind to date, demonstrating the immense potential of using cosmic voids for cosmology in current and future data.

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