English

The Quasar-LBG Two-point Angular Cross-correlation Function at z ~ 4 in the COSMOS Field

Astrophysics of Galaxies 2015-08-26 v2

Abstract

In order to investigate the origin of quasars, we estimate the bias factor for low-luminosity quasars at high redshift for the first time. In this study, we use the two-point angular cross-correlation function (CCF) for both low-luminosity quasars at 24<M1450<22-24<M_{\rm 1450}<-22 and Lyman-break galaxies (LBGs). Our sample consists of both 25 low-luminosity quasars (16 objects are spectroscopically confirmed low-luminosity quasars) in the redshift range 3.1<z<4.53.1<z<4.5 and 835 color-selected LBGs with zLBG<25.0z^{\prime}_{\rm LBG}<25.0 at z4z\sim4 in the COSMOS field. We have made our analysis for the following two quasar samples; (1) the spectroscopic sample (the 16 quasars confirmed by spectroscopy), and (2) the total sample (the 25 quasars including 9 quasars with photometric redshifts). The bias factor for low-luminosity quasars at z4z\sim4 is derived by utilizing the quasar-LBG CCF and the LBG auto-correlation function. We then obtain the 86%86\% upper limits of the bias factors for low-luminosity quasars, that are 5.63 and 10.50 for the total and the spectroscopic samples, respectively. These bias factors correspond to the typical dark matter halo masses, log (MDM/(h1M))=(M_{\rm DM}/(h^{-1}M_{\odot}))=12.712.7 and 13.513.5, respectively. This result is not inconsistent with the predicted bias for quasars which is estimated by the major merger models.

Keywords

Cite

@article{arxiv.1507.05292,
  title  = {The Quasar-LBG Two-point Angular Cross-correlation Function at z ~ 4 in the COSMOS Field},
  author = {H. Ikeda and T. Nagao and Y. Taniguchi and K. Matsuoka and M. Kajisawa and M. Akiyama and T. Miyaji and N. Kashikawa and T. Morokuma and Y. Shioya and M. Enoki and P. Capak and A. M. Koekemoer and D. Masters and M. Salvato and D. B. Sanders and E. Schinnerer and N. Z. Scoville},
  journal= {arXiv preprint arXiv:1507.05292},
  year   = {2015}
}

Comments

13 pages, 9 figures, Accepted for publication in ApJ

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