Modeling Lyman-\alpha\ Forest Cross-Correlations with LyMAS
Abstract
We use the Ly- Mass Association Scheme (LyMAS; Peirani et al. 2014) to predict cross-correlations at between dark matter halos and transmitted flux in the Ly- forest, and compare to cross-correlations measured for quasars and damped Ly- systems (DLAs) from the Baryon Oscillation Spectroscopic Survey (BOSS) by Font-Ribera et al. (2012, 2013). We calibrate LyMAS using Horizon-AGN hydrodynamical cosmological simulations of a comoving volume. We apply this calibration to a simulation realized with dark matter particles. In the 100 Mpc box, LyMAS reproduces the halo-flux correlations computed from the full hydrodynamic gas distribution very well. In the 1 Gpc box, the amplitude of the large scale cross-correlation tracks the halo bias as expected. We provide empirical fitting functions that describe our numerical results. In the transverse separation bins used for the BOSS analyses, LyMAS cross-correlation predictions follow linear theory accurately down to small scales. Fitting the BOSS measurements requires inclusion of random velocity errors; we find best-fit RMS velocity errors of 399 km s and 252 km s for quasars and DLAs, respectively. We infer bias-weighted mean halo masses of and for the host halos of quasars and DLAs, with dex systematic uncertainty associated with redshift evolution, IGM parameters, and selection of data fitting range.
Cite
@article{arxiv.1511.04454,
title = {Modeling Lyman-\alpha\ Forest Cross-Correlations with LyMAS},
author = {Cassandra Lochhaas and David H. Weinberg and Sébastien Peirani and Yohan Dubois and Stéphane Colombi and Jérémy Blaizot and Andreu Font-Ribera and Christophe Pichon and Julien Devriendt},
journal= {arXiv preprint arXiv:1511.04454},
year = {2016}
}
Comments
Accepted by MNRAS, 23 pages, 20 figures. For a short video summarizing this paper, please visit: https://youtu.be/9ghGNtF16JA