The Tianlai dish array low-z surveys forecasts
Abstract
We present the science case for surveys with the Tianlai dish array interferometer tuned to the frequency range. Starting from a realistic generation of mock visibility data according to the survey strategy, we reconstruct a map of the sky and perform a foreground subtraction. We show that a survey of the North Celestial Polar cap during a year of observing time and covering an area of would reach a sensitivity of per voxel and be marginally impacted by mode-mixing. Tianlai would be able to detect a handful of nearby massive \HI clumps as well as a very strong cross-correlation signal of 21\,cm intensity maps with the North Celestial Cap Survey optical galaxies. We have also studied the performance of a mid-latitude survey, covering centered on a declination of , which overlaps the Sloan Digital Sky Survey footprint. Despite a higher noise level for the mid-latitude survey, as well as significant distortions due to mode mixing, Tianlai would be able to detect a highly significant cross-correlation between the 21\,cm signal and the Sloan spectroscopic galaxy sample. Using the extragalactic signals from either or both of these surveys, it will be possible to assess the impact of calibration uncertainties, antenna pattern uncertainties, sources of noise, and mode mixing for future surveys requiring higher sensitivity.
Cite
@article{arxiv.2205.06086,
title = {The Tianlai dish array low-z surveys forecasts},
author = {Olivier Perdereau and Réza Ansari and Albert Stebbins and Peter T. Timbie and Xuelei Chen and Fengquan Wu and Jixia Li and John P. Marriner and Gregory S. Tucker and Yanping Cong and Santanu Das and Yichao Li and Yingfeng Liu and Christophe Magneville and Jeffrey B. Peterson and Anh Phan and Lily Robinthal and Shijie Sun and Yougang Wang and Yanlin Wu and Yidong Xu and Kaifeng Yu and Zijie Yu and Jiao Zhang and Juyong Zhang and Shifan Zuo},
journal= {arXiv preprint arXiv:2205.06086},
year = {2022}
}
Comments
20 pages, 22 figures. Submitted to MNRAS