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
M. Moresco, F. Marulli, L. Moscardini, E. Branchini, A. Cappi, I., Davidzon, B. R. Granett, S. de la Torre, L. Guzzo, U. Abbas, C. Adami, S., Arnouts, J. Bel, M. Bolzonella, D. Bottini, C. Carbone, J. Coupon, O., Cucciati, G. De Lucia, P. Franzetti, A. Fritz, M. Fumana

TL;DR
This study analyzes the dependence of the three-point correlation function on galaxy luminosity and stellar mass at redshifts 0.5 to 1.1 using VIPERS data, revealing scale and shape dependencies and confirming hierarchical clustering.
Contribution
It provides the first analysis of the 3PCF dependence on galaxy properties at these redshifts, extending previous low-redshift findings and exploring its potential for bias constraints.
Findings
3PCF shows scale and shape dependence with anisotropy at larger scales.
Massive and luminous galaxies have a larger connected 3PCF.
Results support hierarchical clustering and galaxy bias constraints.
Abstract
The three-point correlation function (3PCF) is a powerful probe to investigate the clustering of matter in the Universe in a complementary way with respect to lower-order statistics, providing additional information with respect to the two-point correlation function and allowing us to shed light on biasing, nonlinear processes, and deviations from Gaussian statistics. In this paper, we analyse the first data release of the VIMOS Public Extragalactic Redshift Survey (VIPERS), determining the dependence of the three-point correlation function on luminosity and stellar mass at . We exploit the VIPERS Public Data Release 1, consisting of more than 50,000 galaxies with B-band magnitudes in the range and stellar masses in the range . We measure both the connected 3PCF and the…
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