4.7 Article

Baryonic effects on the matter bispectrum

Journal

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
Volume 498, Issue 2, Pages 2887-2911

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/mnras/staa2523

Keywords

methods: numerical; galaxies: haloes; cosmology: theory; large-scale structure of Universe

Funding

  1. Government of Canada through the Department of Innovation, Science and Economic Development Canada
  2. Province of Ontario through the Ministry of Economic Development, Job Creation and Trade
  3. Simons Foundation
  4. European Research Council [ERC-2015-STG 678652]
  5. UK Science and Technology Facilities Council [ST/N000927/1]
  6. STFC [ST/S000623/1] Funding Source: UKRI

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The large-scale clustering of matter is impacted by baryonic physics, particularly active galactic nuclei (AGN) feedback. Modelling or mitigating this impact will be essential for making full use of upcoming measurements of cosmic shear and other large-scale structure probes. We study baryonic effects on the matter bispectrum, using measurements from a selection of state-of-the-art hydrodynamical simulations: IllustrisTNG, Illustris, EAGLE, and BAHAMAS. We identify a low-redshift enhancement of the bispectrum, peaking at k similar to 3 h Mpc(-1), which is present in several simulations, and discuss how it can be associated to the evolving nature of AGN feedback at late times. This enhancement does not appear in the matter power spectrum, and therefore represents a new source of degeneracy breaking between two- and three-point statistics. In addition, we provide physical interpretations for other aspects of these measurements, and make initial comparisons to predictions from perturbation theory, empirical fitting formulas, and the response function formalism. We publicly release our measurements (including estimates of their uncertainty due to sample variance) and bispectrum measurement code as resources for the community.

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