The VIMOS-VLT Deep Survey - The evolution of galaxy clustering per spectral type to z~1.5
Abstract
We measure the evolution of clustering for galaxies with different spectral types from 6495 galaxies with 17.5<=I_AB<=24 and measured spectroscopic redshift in the first epoch VIMOS-VLT Deep Survey. We classify our sample into 4 classes, based on the fit of well-defined galaxy spectral energy distributions on observed multi-color data. We measure the projected function wp(rp) and estimate the best-fit parameters for a power-law real-space correlation function. We find the clustering of early-spectral-type galaxies to be markedly stronger than that of late-type galaxies at all redshifts up to z<=1.2. At z~0.8, early-type galaxies display a correlation length r_0=4.8+/-0.9h^{-1}Mpc, while late types have r_0=2.5+/-0.4h^{-1}Mpc. The clustering of these objects increases up to r_0=3.42+/-0.7h^{-1}Mpc for z~1.4. The relative bias between early- and late-type galaxies within our magnitude-limited survey remains approximately constant with b~1.7-1.8 from z~=0.2 up to z~=1, with indications for a decrease at z>1.2, due to the growth in clustering of the star-forming population. We find similar results when splitting the sample into `red' and `blue' galaxies using the observed color bi-modality. When compared to the expected linear growth of mass fluctuations, a natural interpretation of these observations is that: (a) the assembly of massive early type galaxies is already mostly complete in the densest dark matter halos at z~=1; (b) luminous late-type galaxies are located in higher-density, more clustered regions of the Universe at z~=1.5 than at present, indicating that star formation activity is progressively increasing, going back in time, in the higher-density peaks that today are mostly dominated by old galaxies.
Keywords
Cite
@article{arxiv.astro-ph/0511656,
title = {The VIMOS-VLT Deep Survey - The evolution of galaxy clustering per spectral type to z~1.5},
author = {B. Meneux and O. LeFevre and L. Guzzo and A. Pollo and A. Cappi and O. Ilbert and A. Iovino and C. Marinoni and H. J. McCracken and D. Bottini and B. Garilli and V. LeBrun and D. Maccagni and J. P. Picat and R. Scaramella and M. Scodeggio and L. Tresse and G. Vettolani and A. Zanichelli and C. Adami and S. Arnouts and M. Arnaboldi and S. Bardelli and M. Bolzonella and S. Charlot and P. Ciliegi and T. Contini and S. Foucaud and P. Franzetti and I. Gavignaud and B. Marano and A. Mazure and R. Merighi and S. Paltani and R. Pello and L. Pozzetti and M. Radovich and G. Zamorani and E. Zucca and M. Bondi and A. Bongiorno and G. Busarello and O. Cucciati and L. Gregorini and F. Lamareille and G. Mathez and Y. Mellier and P. Merluzzi and V. Ripepi and D. Rizzo},
journal= {arXiv preprint arXiv:astro-ph/0511656},
year = {2009}
}
Comments
12 pages, Accepted on 11-Feb-06 for publication in Astronomy and Astrophysics