4.7 Article

Large-scale redshift space distortions in modified gravity theories

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stz516

关键词

gravitation; methods: data analysis; methods: statistical; large-scale structure of Universe; cosmology: theory

资金

  1. Mexican National Council of Science and Technology (CONACyT) [286513/438352]
  2. European Research Council [ERC-StG-716532-PUNCA]
  3. STFC Consolidated grants [ST/P000541/1, ST/L00075X/1]
  4. BEIS capital funding via STFC capital grants [ST/K00042X/1, ST/P002293/1, ST/R002371/1, ST/S002502/1]
  5. Durham University
  6. STFC operations grant [ST/R000832/1]
  7. STFC [ST/L00075X/1, ST/R002371/1, ST/R001049/1, ST/M007618/1, ST/R00689X/1, ST/T001372/1, ST/S002502/1, ST/S002529/1, ST/M007065/1, ST/M007006/1, ST/P002293/1, ST/R001006/1, ST/P000541/1, ST/M007073/1, ST/M006948/1, ST/R001014/1, ST/T001569/1, ST/T001348/1, ST/T001550/1, ST/I00162X/1, ST/R000832/1, ST/K00042X/1] Funding Source: UKRI

向作者/读者索取更多资源

Measurements of redshift space distortions (RSD) provide a means to test models of gravity on large scales. We use mock galaxy catalogues constructed from large N-body simulations of standard and modified gravity models to measure galaxy clustering in redshift space. We focus our attention on two of themost representative and popular families ofmodified gravity models: the Hu & Sawicki f(R) gravity and the normal branch of the Dvali-Gabadadze-Porrati (DGP) model. The galaxy catalogues are built using a halo occupation distribution (HOD) prescription with the HOD parameters in the modified gravity models tuned to match with the number density and the real-space clustering of BOSS-CMASS galaxies. We employ two approaches to model RSD: the first is based on linear perturbation theory and the second models non-linear effects on small scales by assuming standard gravity and including biasing and RSD effects. We measure the monopole to real-space correlation function ratio, the quadrupole tomonopole ratio, clustering wedges, and multipoles of the correlation function and use these statistics to find the constraints on the distortion parameter, beta. We find that the linear model fails to reproduce the N-body simulation results and the true value of beta on scales s < 40 h(-1) Mpc, while the non-linear modelling of RSD recovers the value of beta on the scales of interest for all models. RSD on large scales (s greater than or similar to 20-40 h(-1) Mpc) have been found to show significant deviations from the prediction of standard gravity in the DGP models. However, the potential to use RSD to constrain f(R) models is less promising, due to the different screening mechanism in this model.

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