Detecting neutral hydrogen in emission at redshift z similar or equal to 1

作者:Khandai Nishikanta*; Sethi Shiv K; Di Matteo Tiziana; Croft Rupert A C; Springel Volker; Jana Anirban; Gardner Jeffrey P
来源:Monthly Notices of the Royal Astronomical Society, 2011, 415(3): 2580-2593.
DOI:10.1111/j.1365-2966.2011.18881.x

摘要

We use a large N-body simulation to examine the detectability of HI in emission at redshift z similar or equal to 1, and the constraints imposed by current observations on the neutral hydrogen mass function of galaxies at this epoch. We consider three different models for populating dark matter haloes with HI, designed to encompass uncertainties at this redshift. These models are consistent with recent observations of the detection of HI in emission at z similar or equal to 0.8. Whilst detection of 21-cm emission from individual haloes requires extremely long integrations with existing radio interferometers, such as the Giant Meter Radio Telescope (GMRT), we show that the stacked 21-cm signal from a large number of haloes can be easily detected. However, the stacking procedure requires accurate redshifts of galaxies. We show that radio observations of the field of the Deep Extragalactic Evolutionary Probe 2 (DEEP2) spectroscopic galaxy redshift survey should allow detection of the HI mass function at the 5-12 sigma level in the mass range 10(11.4) h(-1) M-circle dot <= M-halo <= 10(12.5) h(-1) M-circle dot, with a moderate amount of observation time. Assuming a larger noise level that corresponds to an upper bound for the expected noise for the GMRT, the detection significance for the HI mass function is still at the 1.7-3 sigma level. We find that optically undetected satellite galaxies enhance the HI emission profile of the parent halo, leading to broader wings as well as a higher peak signal in the stacked profile of a large number of haloes. We show that it is in principle possible to discern the contribution of undetected satellites to the total HI signal, even though cosmic variance limitation make this challenging for some of our models.

  • 出版日期2011-8