Using galaxy pairs to investigate the three-point correlation function in the squeezed limit
arXiv:1705.03464 · doi:10.1093/mnras/stx2032
Abstract
We investigate the three-point correlation function (3PCF) in the squeezed limit by considering galaxy pairs as discrete objects and cross-correlating them with the galaxy field. We develop an efficient algorithm using Fast Fourier Transforms to compute such cross-correlations and their associated pair-galaxy bias bpg and the squeezed 3PCF coefficient Qeff. We implement our method using N-body cosmological simulations and a fiducial Halo Occupation Distribution (HOD) and present the results in both the real space and redshift space. In real space, we observe a peak in bpg and Qeff at pair separation of ~ 2 Mpc, attributed to the fact that galaxy pairs at 2 Mpc separation trace the most massive dark matter halos. We also see strong anisotropy in the bpg and Qeff signals that track the large-scale filamentary structure. In redshift space, both the 2 Mpc peak and the anisotropy are significantly smeared out along the line-of-sight due to Finger-of-God effect. In both the real space and redshift space, the squeezed 3PCF shows a factor of 2 variation, contradicting the hierarchical ansatz but offering rich information on the galaxy-halo connection. Thus, we explore the possibility of using the squeezed 3PCF to constrain the HOD. When we compare two simple HOD models that are closely matched in their projected two-point correlation function (2PCF), we do not yet see a strong variation in the 3PCF that is clearly disentangled from variations in the projected 2PCF. Nevertheless, we propose that more complicated HOD models, e.g. those incorporating assembly bias, can break degeneracies in the 2PCF and show a distinguishable squeezed 3PCF signal.
15 pages, 14 figures, published in MNRAS
References in corpus (17)
- The imprints of primordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objects
- Galaxy Evolution from Halo Occupation Distribution Modeling of DEEP2 and SDSS Galaxy Clustering
- Halo assembly bias and its effects on galaxy clustering
- The shape of primordial non-Gaussianity and the CMB bispectrum
- The Weak Lensing Signal and the Clustering of BOSS Galaxies II: Astrophysical and Cosmological Constraints
- Detection of Baryon Acoustic Oscillation Features in the Large-Scale 3-Point Correlation Function of SDSS BOSS DR12 CMASS Galaxies
- Velocity Bias from the Small Scale Clustering of SDSS-III BOSS Galaxies
- Void Statistics in Large Galaxy Redshift Surveys: Does Halo Occupation of Field Galaxies Depend on Environment?
- The clustering of galaxies in the SDSS-III Baryon Oscillation Spectroscopic Survey: Luminosity and Color Dependence and Redshift Evolution
- The Three-Point Correlation Function of Luminous Red Galaxies in the Sloan Digital Sky Survey
- Improving Initial Conditions for Cosmological -Body Simulations
- Three-Point Correlation Functions of SDSS Galaxies: Luminosity and Color Dependence in Redshift and Projected Space
- Modeling the three-point correlation function
- Modelling The Redshift-Space Three-Point Correlation Function in SDSS-III
- Luminous Red Galaxy Population in Clusters at
- Modeling Galaxy-Galaxy Weak Lensing with SDSS Groups
- Galaxy Three-Point Correlation Functions and Halo/Subhalo Models
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- How to Optimally Constrain Galaxy Assembly Bias: Supplement Projected Correlation Functions with Count-in-cells Statistics
- 2D k-th nearest neighbor statistics: a highly informative probe of galaxy clustering
- Constraining galaxy-halo connection with high-order statistics
- The nonlinear field equation of the three-point correlation function of galaxies
- Decorrelating the errors of the galaxy correlation function with compact transformation matrices
- Analytical Equation of Three-point Correlation Function of Galaxies: to Third Order of Density Perturbation