English

Quasar -- CIV forest cross-correlation with SDSS DR12

Cosmology and Nongalactic Astrophysics 2018-07-25 v3

Abstract

We present a new determination of the large-scale clustering of the CIV forest (i.e., the absorption due to all CIV absorbers) using its cross-correlation with quasars in the Sloan Digital Sky Survey (SDSS) Data Release 12 (DR12). We fit a linear bias model to the measured cross-correlation. We find that the transmission bias of the CIV forest, bFcb_{Fc}, at a mean redshift of z=2.3z=2.3, obeys the relation (1+βc)bFc=0.024±0.003(1+\beta_c)b_{F c} = -0.024 \pm 0.003. Here, βc\beta_{c} is the linear redshift space distortion parameter of the CIV absorption, which can only be poorly determined at βc=1.1±0.6\beta_c=1.1\pm 0.6 from our data. This transmission bias is related to the bias of CIV absorbers and their host halos through the effective mean optical depth of the CIV forest, τˉc\bar\tau_c. Estimating a value τˉc(z)0.01\bar \tau_c(z) \simeq 0.01 from previous studies of the CIV equivalent width distribution, our measurement implies a CIV absorber bias near unity, with a large error due to uncertainties in both βc\beta_c and τˉc\bar\tau_c. This makes it compatible with the higher DLA bias bDLA2b_{\rm DLA}\simeq 2 measured previously from the cross-correlation of DLAs and the Lyman-α\alpha forest. We discuss the implications of the CIV absorber bias for the mass distribution of their host halos. More accurate determinations of τˉc(z)\bar \tau_c(z) and βc\beta_c are necessary to obtain a more robust measurement of this CIV absorber bias.

Cite

@article{arxiv.1712.09886,
  title  = {Quasar -- CIV forest cross-correlation with SDSS DR12},
  author = {Satya Gontcho A Gontcho and Jordi Miralda-Escudé and Andreu Font-Ribera and Michael Blomqvist and Nicolás G. Busca and James Rich},
  journal= {arXiv preprint arXiv:1712.09886},
  year   = {2018}
}
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