Probability Distribution Function of Cosmological Density Fluctuations from Gaussian Initial Condition: Comparison of One- and Two-point Log-normal Model Predictions with N-body Simulations
arXiv:astro-ph/0105218 · doi:10.1086/323227
Abstract
We quantitatively study the probability distribution function (PDF) of cosmological nonlinear density fluctuations from N-body simulations with Gaussian initial condition. In particular, we examine the validity and limitations of one-point and two-point log-normal PDF models against those directly estimated from the simulations. We find that the one-point log-normal PDF describes very accurately the cosmological density distribution even in the nonlinear regime (the rms variance σ_{nl} \simlt 4 and the over-density δ\simlt 100). Furthermore the two-point log-normal PDFs are also in good agreement with the simulation data from linear to fairly nonlinear regime, while slightly deviate from them for δ\simlt -0.5. Thus the log-normal PDF can be used as a useful empirical model for the cosmological density fluctuations. While this conclusion is fairly insensitive to the shape of the underlying power spectrum of density fluctuations P(k), models with substantial power on large scales, i.e., n\equiv d\ln P(k)/d \ln k \simlt -1, are better described by the log-normal PDF. On the other hand, we note that the one-to-one mapping of the initial and the evolved density fields consistent with the log-normal model does not approximate the broad distribution of their mutual correlation even on average. Thus the origin of the phenomenological log-normal PDF approximation still remains to be understood.
25 pages, 8 figures, Accepted for publication in ApJ
References in corpus (1)
Cited by in corpus (119)
- The 2dF Galaxy Redshift Survey: Power-spectrum analysis of the final dataset and cosmological implications
- Dark Energy Survey Year 1 Results: Cosmological Constraints from Cosmic Shear
- Linking halo mass to galaxy luminosity
- The Python Sky Model: software for simulating the Galactic microwave sky
- Improving lognormal models for cosmological fields
- Nonthermal radiation from clusters of galaxies: the role of merger shocks in particle acceleration
- KiDS-1000 Methodology: Modelling and inference for joint weak gravitational lensing and spectroscopic galaxy clustering analysis
- Fast Hamiltonian sampling for large scale structure inference
- Dark Energy Survey Year 1 Results: Galaxy-Galaxy Lensing
- Fisher for complements: Extracting cosmology and neutrino mass from the counts-in-cells PDF
- Dark Photon Oscillations in Our Inhomogeneous Universe
- Bayesian power-spectrum inference for Large Scale Structure data
- Probability Distribution Functions of Cosmological Lensing: Convergence, Shear, and Magnification
- Cosmic shear covariance: The log-normal approximation
- Bayesian non-linear large scale structure inference of the Sloan Digital Sky Survey data release 7
- Lognormal Property of Weak Lensing Fields
- Tree-Particle-Mesh: an adaptive, efficient, and parallel code for collisionless cosmological simulation
- The VIMOS VLT Deep Survey: Evolution of the non-linear galaxy bias up to z=1.5
- Discreteness Effects in Lambda Cold Dark Matter Simulations: A Wavelet-Statistical View
- Recovering the nonlinear density field from the galaxy distribution with a Poisson-Lognormal filter
- Testing the lognormality of the galaxy and weak lensing convergence distributions from Dark Energy Survey maps
- Back in the saddle: Large-deviation statistics of the cosmic log-density field
- Generating Log-normal Mock Catalog of Galaxies in Redshift Space
- Measuring the Integrated Sachs-Wolfe Effect
- An Empirically-Calibrated Model For Interpreting the Evolution of Galaxies During the Reionization Era
- Dark Energy Survey Year 3 Results: High-precision measurement and modeling of galaxy-galaxy lensing
- Cosmological inference from Bayesian forward modelling of deep galaxy redshift surveys
- On the incompleteness of the moment and correlation function hierarchy as probes of the lognormal field
- Dark Photon Dark Matter in the Presence of Inhomogeneous Structure
- Bayesian inference from photometric redshift surveys
- Three-Dimensional Genus Statistics of Galaxies in the SDSS Early Data Release
- A Large Sky Simulation of the Gravitational Lensing of the Cosmic Microwave Background
- The gamma ray background from large scale structure formation
- Cosmological Density Distribution Function from the Ellipsoidal Collapse Model in Real Space
- Insights from probability distribution functions of intensity maps
- Inference with minimal Gibbs free energy in information field theory
- Measuring our universe from galaxy redshift surveys
- Accurate weak lensing of standard candles. I. Flexible cosmological fits
- Testing a new analytic model for gravitational lensing probabilities
- The mass density field in simulated non-Gaussian scenarios
- Game of cones: A nulling strategy for modelling lensing convergence in cones with large deviation theory
- Evolution of Cosmological Density Distribution Function from the Local Collapse Model
- Modeling Dark Photon Oscillations in Our Inhomogeneous Universe
- Can large-scale structure probe CMB-constrained non-Gaussianity?
- Structural Analysis of the SDSS Cosmic Web I.Nonlinear Density Field Reconstructions
- Strategies to Detect Dark-Matter Decays with Line-Intensity Mapping
- Testing standard perturbation theory and the Eulerian local biasing scheme against N-body simulations
- Effect of clustering on extragalactic source counts with low-resolution instruments
- Reliability of the dark matter clustering in cosmological N-body simulation on scales below the mean separation length of particles
- Radial profile and log-normal fluctuations of intra-cluster medium as an origin of systematic bias of spectroscopic temperature
- Disantangling the effects of Doppler velocity and primordial non-Gaussianity in galaxy power spectra
- Cosmological information in Gaussianised weak lensing signals
- Testing the imprint of non-standard cosmologies on void profiles using Monte Carlo random walks
- Non-perturbative probability distribution function for cosmological counts in cells
- On the statistics of proto-cluster candidates detected in the Planck all-sky survey
- Modeling peculiar velocities of dark matter halos
- Weak lensing and the Dyer-Roeder approximation
- The best fit for the observed galaxy Counts-in-Cell distribution function
- Primordial Non-Gaussianity and Extreme-Value Statistics of Galaxy Clusters
- Sufficient observables for large scale structure in galaxy surveys
- KiDS-SBI: Simulation-based inference analysis of KiDS-1000 cosmic shear
- The effect of inhomogeneities on the distance to the last scattering surface and the accuracy of the CMB analysis
- Galaxy redshift surveys with sparse sampling
- GLASS: Generator for Large Scale Structure
- Multiple Lensing of the Cosmic Microwave Background anisotropies
- An optimal survey geometry of weak lensing survey: minimizing super-sample covariance
- Cylinders out of a top hat: counts-in-cells for projected densities
- New fitting formula for cosmic non-linear density distribution
- Canceling out intensity mapping foregrounds
- Characterization of the distribution of the Llyαemitters in the 53W002 field at z = 2.4
- Constraints on Cosmology and Baryonic Feedback with the Deep Lens Survey Using Galaxy-Galaxy and Galaxy-Mass Power Spectra
- The Contribution of the Intergalactic Medium to Cosmic Microwave Background Anisotropies
- Dark Energy from the log-transformed convergence field
- The Probability Distribution Function of Light in the Universe: Results from Hydrodynamic Simulations
- Evolution of the Cosmological Density Distribution Function: A New Analytical Model
- Weak Lensing by Intergalactic Mini-Structures in Quadruple Lens Systems: Simulation and Detection
- Data Compression and Inference in Cosmology with Self-Supervised Machine Learning
- The position-dependent matter density probability distribution function
- A Stimulating Explanation of the Extragalactic Radio Background
- Genus statistics for galaxy clusters and nonlinear biasing of dark matter halos
- Gaussian random field power spectrum and the Sérsic law
- Evolution of skewness and kurtosis of cosmic density fields
- Tomography and Weak lensing Statistics
- A Second-order bias model for the Logarithmic Halo Mass Density
- The VIMOS VLT Deep Survey: Testing the gravitational instability paradigm at z ~ 1
- Exploring the non-linear density field in the Millennium simulations with tessellations - I. The probability distribution function
- Phase Space dynamics of triaxial collapse: Joint density-velocity evolution
- Log-transforming the matter power spectrum
- Cross-correlating Sunyaev-Zel'dovich and Weak Lensing Maps
- Denoising, deconvolving and decomposing multi-domain photon observations- The D4PO algorithm
- New Statistical Perspective to The Cosmic Void Distribution
- A semi-analytic model of pairwise velocity distribution between dark matter halos
- Forecasts of cosmological constraints from Type Ia supernovae including the weak-lensing convergence
- Constraining neutrino mass and dark energy with peculiar velocities and lensing dispersions of Type Ia supernovae
- One-point statistics of the Lagrangian displacement field
- On fast Generation of Cosmological Random Fields
- Non-Gaussian Tails of Cosmological Density Distribution Function from Dark Halo Approach
- The bispectrum covariance beyond Gaussianity: A log-normal approach
- Biasing and Genus Statistics of Dark Matter Halos in the Hubble Volume Simulation
- Perturbative Gaussianizing transforms for cosmological fields
- SIMPLE: Simple Intensity Map Producer for Line Emission
- Non-Gaussianity of the density distribution in accelerating universes
- Joint constraints on galaxy bias and through the N-pdf of the galaxy number density
- Bayesian large-scale structure inference and cosmic web analysis
- Operator Calculus for Information Field Theory
- A possible explanation of vanishing halo velocity bias
- The magnitude-redshift relation in a realistic inhomogeneous universe
- Ray-tracing log-normal simulation for weak gravitational lensing: application to the cross-correlation with galaxies
- Bayesian analysis of spatially distorted cosmic signals from Poissonian data
- Non-Gaussianity of one-point distribution functions in extended Lagrangian perturbation theory
- Inferring Host Dark Matter Halo Masses of Individual Galaxies from Neighboring Galaxy Counts
- Modelling the environmental dependence of the growth rate
- Predicting the Sufficient-Statistics Power Spectrum for Galaxy Surveys: A Recipe for
- Lognormal Distribution of Cosmic Voids in Simulations and Mocks
- The Statistics of Cosmological Lyman-alpha Absorption
- Halo detection via large-scale Bayesian inference
- Transients from Initial Conditions Based on Lagrangian Perturbation Theory in -body Simulations III: The Case of GADGET-2 Code
- Non-Gaussianity of the density distribution in accelerating universes II:N-body simulations
- Probing the Dark Side of Gravitational Clustering: Weak Lensing Statistics at Large Smoothing Angle