CHILES VII: Deep Imaging for the CHILES project, a SKA prototype
arXiv:2112.06488 · doi:10.3847/1538-3881/ac3e65
Abstract
Radio Astronomy is undergoing a renaissance, as the next-generation of instruments provides a massive leap forward in collecting area and therefore raw sensitivity. However, to achieve this theoretical level of sensitivity in the science data products we need to address the much more pernicious systematic effects, which are the true limitation. These become all the more significant when we consider that much of the time used by survey instruments, such as the SKA, will be dedicated to deep surveys. CHILES is a deep HI survey of the COSMOS field, with 1,000 hours of VLA time. We present our approach for creating the image cubes from the first Epoch, with discussions of the methods and quantification of the data quality from 946 to 1420MHz -- a redshift range of 0.5 to 0. We layout the problems we had to solve and describe how we tackled them. These are of importance as CHILES is the first deep wideband multi-epoch HI survey and it has relevance for ongoing and future surveys. We focus on the accumulated systematic errors in the imaging, as the goal is to deliver a high-fidelity image that is only limited by the random thermal errors. To understand and correct these systematic effects we ideally manage them in the domain in which they arise, and that is predominately the visibility domain. CHILES is a perfect test bed for many of the issues we can expect for deep imaging with the SKA or ngVLA and we discuss the lessons we have learned.
Accepted in AJ
References in corpus (8)
- astroquery: An Astronomical Web-Querying Package in Python
- The Second-Generation Guide Star Catalog: Description and Properties
- Improved upper limits on the 21-cm signal power spectrum of neutral hydrogen at from LOFAR
- SoFiA: a flexible source finder for 3D spectral line data
- First Season MWA Phase II EoR Power Spectrum Results at Redshift 7
- Precise radio astrometry and new developments for the next generation of instruments
- Primary beam effects of radio astronomy antennas: I. Modelling the Karl G. Jansky Very Large Array (VLA) L-band beam using holography
- The VLA Frontier Fields Survey: Deep, High-resolution Radio Imaging of the MACS Lensing Clusters at 3 and 6 GHz