Euclid preparation. Modelling spectroscopic clustering on mildly nonlinear scales in beyond-CDM models
arXiv:2311.13529 · doi:10.1051/0004-6361/202348784
Abstract
We investigate the approximations needed to efficiently predict the large-scale clustering of matter and dark matter halos in beyond-CDM scenarios. We examine the normal branch of the Dvali-Gabadadze-Porrati model, the Hu-Sawicki model, a slowly evolving dark energy, an interacting dark energy model and massive neutrinos. For each, we test approximations for the perturbative kernel calculations, including the omission of screening terms and the use of perturbative kernels based on the Einstein-de Sitter universe; we explore different infrared-resummation schemes, tracer bias models and a linear treatment of massive neutrinos; we employ two models for redshift space distortions, the Taruya-Nishimishi-Saito prescription and the Effective Field Theory of Large-Scale Structure. This work further provides a preliminary validation of the codes being considered by Euclid for the spectroscopic clustering probe in beyond-CDM scenarios. We calculate and compare the statistic to assess the different modelling choices. This is done by fitting the spectroscopic clustering predictions to measurements from numerical simulations and perturbation theory-based mock data. We compare the behaviour of this statistic in the beyond-CDM cases, as a function of the maximum scale included in the fit, to the baseline CDM case. We find that the Einstein-de Sitter approximation without screening is surprisingly accurate for all cases when comparing to the halo clustering monopole and quadrupole obtained from simulations. Our results suggest that the inclusion of multiple redshift bins, higher-order multipoles, higher-order clustering statistics (such as the bispectrum) and photometric probes such as weak lensing, will be essential to extract information on massive neutrinos, modified gravity and dark energy.
29 pages, 10 figures, 4 tables, 3 appendices. Journal accepted version
References in corpus (144)
- Observational Evidence from Supernovae for an Accelerating Universe and a Cosmological Constant
- Measurements of Omega and Lambda from 42 High-Redshift Supernovae
- Planck 2013 results. XVI. Cosmological parameters
- The cosmological simulation code GADGET-2
- Nine-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Parameter Results
- 4D Gravity on a Brane in 5D Minkowski Space
- Exploring the Expansion History of the Universe
- Accelerating Universes with Scaling Dark Matter
- Is Cosmic Speed-Up Due to New Gravitational Physics?
- Large-Scale Structure of the Universe and Cosmological Perturbation Theory
- Models of f(R) Cosmic Acceleration that Evade Solar-System Tests
- Chameleon Cosmology
- The Rockstar Phase-Space Temporal Halo Finder and the Velocity Offsets of Cluster Cores
- Massive neutrinos and cosmology
- Cosmology and Fundamental Physics with the Euclid Satellite
- Power Spectra for Cold Dark Matter and its Variants
- Large-Scale Galaxy Bias
- Measurement of the Total Active 8B Solar Neutrino Flux at the Sudbury Neutrino Observatory with Enhanced Neutral Current Sensitivity
- Measurements of the Solar Neutrino Flux from Super-Kamiokande's First 300 Days
- Strong Interactions and Stability in the DGP Model
- Cosmological Non-Linearities as an Effective Fluid
- The Effective Field Theory of Cosmological Large Scale Structures
- Resumming Cosmological Perturbations via the Lagrangian Picture: One-loop Results in Real Space and in Redshift Space
- The Cosmological Analysis of the SDSS/BOSS data from the Effective Field Theory of Large-Scale Structure
- Cosmological Parameters from the BOSS Galaxy Power Spectrum
- Baryon Acoustic Oscillations in 2D: Modeling Redshift-space Power Spectrum from Perturbation Theory
- Clustering of dark matter tracers: generalizing bias for the coming era of precision LSS
- The clustering of galaxies in the completed SDSS-III Baryon Oscillation Spectroscopic Survey: Anisotropic galaxy clustering in Fourier-space
- Gravity and Large-Scale Non-local Bias
- The Bispectrum as a Signature of Gravitational Instability in Redshift-Space
- Evidence for Quadratic Tidal Tensor Bias from the Halo Bispectrum
- ECOSMOG: An Efficient Code for Simulating Modified Gravity
- The effect of neutrinos on the matter distribution as probed by the Intergalactic Medium
- A critical look at cosmological perturbation theory techniques
- More on ghosts in DGP model
- Equivalence Principle and the Baryon Acoustic Peak
- Non-linear perturbation theory extension of the Boltzmann code CLASS
- Reconciling CMB and structure growth measurements with dark energy interactions
- Bias in the Effective Field Theory of Large Scale Structures
- Generation of Vorticity and Velocity Dispersion by Orbit Crossing
- Renormalized Halo Bias
- Understanding higher-order nonlocal halo bias at large scales by combining the power spectrum with the bispectrum
- Time-Sliced Perturbation Theory II: Baryon Acoustic Oscillations and Infrared Resummation
- Biased Tracers and Time Evolution
- Cosmology with massive neutrinos II: on the universality of the halo mass function and bias
- Current constraints on the cosmic growth history
- DEMNUni: The clustering of large-scale structures in the presence of massive neutrinos
- DGP Specteroscopy
- The Effective Field Theory of Large Scale Structures at Two Loops
- Initial Conditions for Large Cosmological Simulations
- Blinded challenge for precision cosmology with large-scale structure: results from effective field theory for the redshift-space galaxy power spectrum
- A Lagrangian effective field theory
- Limits on CDM from the EFTofLSS with the PyBird code
- Cosmology with massive neutrinos I: towards a realistic modeling of the relation between matter, haloes and galaxies
- How to optimally parametrize deviations from General Relativity in the evolution of cosmological perturbations
- Models of coupled dark matter to dark energy
- A practical approach to cosmological perturbations in modified gravity
- FAST-PT: a novel algorithm to calculate convolution integrals in cosmological perturbation theory
- Cosmology with massive neutrinos III: the halo mass function and an application to galaxy clusters
- Non-linear Evolution of Matter Power Spectrum in Modified Theory of Gravity
- Constraining with the Bispectrum I: Breaking Parameter Degeneracies
- The Mira-Titan Universe: Precision Predictions for Dark Energy Surveys
- Massive Neutrinos Leave Fingerprints on Cosmic Voids
- Cosmic Degeneracies I: Joint N-body Simulations of Modified Gravity and Massive Neutrinos
- Cosmological Simulations of Normal-Branch Braneworld Gravity
- The Santiago-Harvard-Edinburgh-Durham void comparison I: SHEDding light on chameleon gravity tests
- Accounting for baryonic effects in cosmic shear tomography: Determining a minimal set of nuisance parameters using PCA
- Exploring Vainshtein mechanism on adaptively refined meshes
- Cosmological constraints from BOSS with analytic covariance matrices
- The Outer Rim Simulation: A Path to Many-Core Supercomputers
- Non-local Lagrangian bias
- Assessment of the Information Content of the Power Spectrum and Bispectrum
- Effects of Massive Neutrinos on the Large-Scale Structure of the Universe
- The imprint of neutrinos on clustering in redshift-space
- BOSS Correlation Function Analysis from the Effective Field Theory of Large-Scale Structure
- Physical effects involved in the measurements of neutrino masses with future cosmological data
- Initial Conditions for Accurate N-Body Simulations of Massive Neutrino Cosmologies
- Testing Screened Modified Gravity
- Precision analysis of the redshift-space galaxy bispectrum
- Bispectrum and Nonlinear Biasing of Galaxies: Perturbation Analysis, Numerical Simulation and SDSS Galaxy Clustering
- Coarse-Grained Cosmological Perturbation Theory
- Cosmology with the EFTofLSS and BOSS: dark energy constraints and a note on priors
- The Void Size Function in Dynamical Dark Energy Cosmologies
- FAST-PT II: an algorithm to calculate convolution integrals of general tensor quantities in cosmological perturbation theory
- Scattering of Dark Matter and Dark Energy
- DEMNUni: ISW, Rees-Sciama, and weak-lensing in the presence of massive neutrinos
- The bias of cosmic voids in the presence of massive neutrinos
- On the road to percent accuracy IV: ReACT -- computing the non-linear power spectrum beyond CDM
- A Perturbative Approach to the Redshift Space Power Spectrum: Beyond the Standard Model
- Consistency of effective field theory analyses of the BOSS power spectrum
- CMB weak-lensing beyond the Born approximation: a numerical approach
- Toward a robust inference method for the galaxy bispectrum: likelihood function and model selection
- DEMNUni: Massive neutrinos and the bispectrum of large scale structures
- An analytic implementation of the IR-resummation for the BAO peak
- Cosmological parameters from the likelihood analysis of the galaxy power spectrum and bispectrum in real space
- Towards Precision Constraints on Gravity with the Effective Field Theory of Large-Scale Structure
- Very Massive Tracers and Higher Derivative Biases
- Euclid: impact of nonlinear prescriptions on cosmological parameter estimation from weak lensing cosmic shear
- Precision cosmology with redshift-space bispectrum: a perturbation theory based model at one-loop order
- Accurate fitting functions for peculiar velocity spectra in standard and massive-neutrino cosmologies
- Lagrangian perturbation theory for modified gravity
- Constraints on modified gravity from the BOSS galaxy survey
- Regularized cosmological power spectrum and correlation function in modified gravity models
- Large-scale redshift space distortions in modified gravity theories
- FORGE -- the f(R) gravity cosmic emulator project I: Introduction and matter power spectrum emulator
- Structure formation simulations with momentum exchange: alleviating tensions between high-redshift and low-redshift cosmological probes
- Consistent Modified Gravity Analysis of Anisotropic Galaxy Clustering Using BOSS DR11
- On the road to percent accuracy V: the non-linear power spectrum beyond CDM with massive neutrinos and baryonic feedback
- Fast computation of non-linear power spectrum in cosmologies with massive neutrinos
- The one-loop matter bispectrum as a probe of gravity and dark energy
- The effect of massive neutrinos on the Sunyaev-Zeldovich and X-ray observables of galaxy clusters
- The Completed SDSS-IV Extended Baryon Oscillation Spectroscopic Survey: N-body Mock Challenge for Galaxy Clustering Measurements
- Simulating Momentum Exchange in the Dark Sector
- The modified gravity lightcone simulation project I: Statistics of matter and halo distributions
- Constructing perturbation theory kernels for large-scale structure in generalized cosmologies
- Cosmological constraints from galaxy clustering in the presence of massive neutrinos
- The Halo Bispectrum Multipoles in Redshift Space
- Fast and accurate predictions of the nonlinear matter power spectrum for general models of Dark Energy and Modified Gravity
- Modified gravity and massive neutrinos: constraints from the full shape analysis of BOSS galaxies and forecasts for Stage IV surveys
- Theoretical Accuracy in Cosmological Growth Estimation
- Weighing Neutrinos in gravity
- An accurate perturbative approach to redshift space clustering of biased tracers in modified gravity
- A Perturbative Approach to the Redshift Space Correlation Function: Beyond the Standard Model
- DEMNUni: comparing nonlinear power spectra prescriptions in the presence of massive neutrinos and dynamical dark energy
- The effects of massive neutrinos on the linear point of the correlation function
- Investigating the degeneracy between modified gravity and massive neutrinos with redshift-space distortions
- Interacting dark energy from the joint analysis of the power spectrum and bispectrum multipoles with the EFTofLSS
- DEMNUni: disentangling dark energy from massive neutrinos with the void size function
- The halo bias inside cosmic voids
- DEMNUni: The imprint of massive neutrinos on the cross-correlation between cosmic voids and CMB lensing
- Redshift space power spectrum beyond Einstein-de Sitter kernels
- Analysis of Unified Galaxy Power Spectrum Multipole Measurements
- Convolution Lagrangian perturbation theory for biased tracers beyond general relativity
- Clustering and redshift-space distortions in modified gravity models with massive neutrinos
- The VIMOS Public Extragalactic Redshift Survey (VIPERS). Exploring the dependence of the three-point correlation function on stellar mass and luminosity at 0.5<z<1.1
- Modelling Non-Linear Effects of Dark Energy
- Breaking cosmic degeneracies: Disentangling neutrinos and modified gravity with kinematic information
- COVMOS: a new Monte Carlo approach for galaxy clustering analysis
- Modelling the next-to-leading order matter three-point correlation function using FFTLog
- Probing gravity with redshift-space distortions: effects of tracer bias and sample selection
- Assessing non-linear models for galaxy clustering II: model validation and forecasts for Stage IV surveys
- Assessing non-linear models for galaxy clustering III: Theoretical accuracy for Stage IV surveys
- Cosmology in the non-linear regime : the small scale miracle
- DEMNUni: cross-correlating the nonlinear ISWRS effect with CMB-lensing and galaxies in the presence of massive neutrinos
Cited by in corpus (7)
- Modified Gravity Constraints from the Full Shape Modeling of Clustering Measurements from DESI 2024
- Neutrino masses from large-scale structures: future sensitivity and theory dependence
- Euclid preparation LXXI. Simulations and nonlinearities beyond CDM. 3. Constraints on models from the photometric primary probes
- Parameterization of Stochasticity in Galaxy Clustering and Reconstruction of Tomographic Matter Clustering
- Euclid: Constraints on f(R) cosmologies from the spectroscopic and photometric primary probes
- Fullshape power spectrum for the Symmetron modified gravity model
- Testing the growth of cosmic structures during the Dark Ages