The Bispectrum of f(R) Cosmologies
arXiv:1109.2115 · doi:10.1088/1475-7516/2011/11/019
Abstract
In this paper we analyze a suite of cosmological simulations of modified gravitational action f(R) models, where cosmic acceleration is induced by a scalar field that acts as a fifth force on all forms of matter. In particular, we focus on the bispectrum of the dark matter density field on mildly non-linear scales. For models with the same initial power spectrum, the dark matter bispectrum shows significant differences for cases where the final dark matter power spectrum also differs. Given the different dependence on bias of the galaxy power spectrum and bispectrum, bispectrum measurements can close the loophole of galaxy bias hiding differences in the power spectrum. Alternatively, changes in the initial power spectrum can also hide differences. By constructing LCDM models with very similar final non-linear power spectra, we show that the differences in the bispectrum are reduced (<4%) and are comparable with differences in the imperfectly matched power spectra. These results indicate that the bispectrum depends mainly on the power spectrum and less sensitively on the gravitational signatures of the f(R) model. This weak dependence of the matter bispectrum on gravity makes it useful for breaking degeneracies associated with galaxy bias, even for models beyond general relativity.
14 pages, 5 figures, Published in JCAP
References in corpus (10)
- Models of f(R) Cosmic Acceleration that Evade Solar-System Tests
- Non-linear Evolution of f(R) Cosmologies III: Halo Statistics
- Non-linear evolution of f(R) cosmologies II: power spectrum
- N-body Simulations for f(R) Gravity using a Self-adaptive Particle-Mesh Code
- Non-linear evolution of f(R) cosmologies I: methodology
- Cosmological Constraints on f(R) Acceleration Models
- An improved fitting formula for the dark matter bispectrum
- Chameleon Halo Modeling in f(R) Gravity
- Three-Point Correlations in f(R) Models of Gravity
- Cosmological Large-scale Structures beyond Linear Theory in Modified Gravity
Cited by in corpus (44)
- The clustering of galaxies in the SDSS-III Baryon Oscillation Spectroscopic Survey: RSD measurement from the power spectrum and bispectrum of the DR12 BOSS galaxies
- The power spectrum and bispectrum of SDSS DR11 BOSS galaxies I: bias and gravity
- Dynamical behavior in mimetic F(R) gravity
- Redshift space distortions in f(R) gravity
- Constraining chameleon models with cosmology
- An improved fitting formula for the dark matter bispectrum
- Constraining models of gravity with Planck and WiggleZ power spectrum data
- Galaxy redshift-space bispectrum: the Importance of Being Anisotropic
- Halo modelling in chameleon theories
- Joint analysis of anisotropic power spectrum, bispectrum and trispectrum: application to N-body simulations
- Matter bispectrum in cubic Galileon cosmologies
- Signatures of Horndeski gravity on the Dark Matter Bispectrum
- Enhancing BOSS bispectrum cosmological constraints with maximal compression
- Structure Formation in Modified Gravity Scenarios
- The one-loop matter bispectrum as a probe of gravity and dark energy
- Parametrized modified gravity constraints after Planck
- The imprint of gravity on weak gravitational lensing II : Information content in cosmic shear statistics
- One-point remapping of Lagrangian perturbation theory in the mildly non-linear regime of cosmic structure formation
- Probing Modified Gravity Theories with ISW and CMB Lensing
- The imprint of gravity on weak gravitational lensing I: Connection between observables and large scale structure
- New constraints on cosmological modified gravity theories from anisotropic three-point correlation functions of BOSS DR12 galaxies
- Cosmology with Hu-Sawicki gravity in Palatini Formalism
- Modelling the matter bispectrum at small scales in modified gravity
- Studying large-scale structure probes of modified gravity with COLA
- 3D Weak Lensing: Modified Theories of Gravity
- Future CMB ISW-Lensing bispectrum constraints on modified gravity in the Parameterized Post-Friedmann formalism
- Integrated trispectrum detection from BOSS DR12 NGC CMASS
- Cosmological Probes of Structure Growth and Tests of Gravity
- The Integrated Bispectrum in Modified Gravity Theories
- Probing scalar tensor theories for gravity in redshift space
- Galaxy Clustering in 3D and Modified Gravity Theories
- Consistency Relations in Effective Field Theory
- FRW cosmologies and hyperscaling-violating geometries: higher curvature corrections, ultrametricity, Q-space/QFT duality, and a little string theory
- Estimates of cluster masses in screened modified gravity
- One-point statistics of the Lagrangian displacement field
- Cosmological Constraints from Fourier Phase Statistics
- A field-level emulator for modified gravity
- A Machine Learning Approach to Correct for Mass Resolution Effects in Simulated Halo Clustering Statistics
- Proca-stinated Cosmology II: Matter, Halo, and Lensing Statistics in the vector Galileon
- Fast simulation mapping: from standard to modified gravity cosmologies using the bias assignment method
- Individual halo bias in models of gravity
- Marked statistics across the cosmic web: Environmental dependent clustering in modified gravity simulations
- Type-III Scotogenic Model: Inflation, Dark Matter and Collider Phenomenology
- Probing gravity beyond general relativity with bispectrum multipoles of cosmological tracers: I. Theoretical Foundations