Projected Three-Point Correlation Functions and Galaxy Bias
arXiv:astro-ph/0405527 · doi:10.1086/423838
Abstract
The three-point correlation function (3PCF) can now be measured in large galaxy redshift surveys, but in three dimensions its interpretation is complicated by the presence of redshift-space distortions. I investigate the projected 3PCF, where these distortions are eliminated by integrating over the redshift dimension, as is commonly done for the two-point correlation function. The calculation of the projected 3PCF from the real-space, three-dimensional bispectrum is greatly simplified by expanding both quantities in Fourier components, analogous to Szapudi's (2004) expansion of the three-dimensional quantities in multipole components. In the weakly nonlinear regime, the bispectrum can be well represented by the first few Fourier components. There is a well-known relation between the reduced 3PCFs of matter and galaxies in the weakly nonlinear regime, which can be used to infer galaxy bias factors if the real-space three-dimensional galaxy correlation functions (two-point and three-point) can be measured. I show that the same relation holds for the reduced {\it projected} 3PCFs if these are properly defined. These results should aid determinations of galaxy bias from large redshift surveys by eliminating the complication of redshift-space distortions.
13 pages, 1 figure. To appear in ApJ (Oct. 20th, 2004). References added. Minor revisons to match the version in press
References in corpus (4)
- Three-point Correlation Functions of SDSS Galaxies in Redshift Space: Morphology, Color, and Luminosity Dependence
- The Three-point Correlation Function of Galaxies Determined from the 2dF Galaxy Redshift Survey
- The Three-point Correlation Function of Galaxies: Comparing Halo Occupation Models with Observations
- Three-Point Statistics from a New Perspective
Cited by in corpus (18)
- Towards a Concordant Model of Halo Occupation Statistics
- Radiative Transfer Modeling of Lyman Alpha Emitters. II. New Effects in Galaxy Clustering
- Measuring the growth of matter fluctuations with third-order galaxy correlations
- Accelerating the 2-point and 3-point galaxy correlation functions using Fourier transforms
- Three-Point Correlation Functions of SDSS Galaxies: Constraining Galaxy-Mass Bias
- Accurate and Efficient Halo-based Galaxy Clustering Modelling with Simulations
- Weighing obscured and unobscured quasar hosts with the CMB
- Classification of Magnetohydrodynamic Simulations using Wavelet Scattering Transforms
- Baryon acoustic oscillations signature in the three-point angular correlation function from the SDSS-DR12 quasar survey
- Cosmological Three-Point Function: Testing The Halo Model Against Simulations
- Non-Gaussian gravitational clustering field statistics
- Stellar Mass and color dependence of the three-point correlation function of galaxies in the local universe
- C-Cluster Clustering Cosmology II. First detection of the BAO peak in the three-point correlation function of galaxy clusters
- Optimal computation of anisotropic galaxy three point correlation function multipoles using 2DFFTLOG formalism
- Constraining galaxy-halo connection with high-order statistics
- Non-Gaussian statistics in galaxy weak lensing: compressed three-point correlations and cosmological forecasts
- Introduction to Higher Order Spatial Statistics in Cosmology
- A redshift distortion free correlation function at third order in the nonlinear regime