English

Dish Assembly Precision for HIRAX

Instrumentation and Methods for Astrophysics 2026-07-29 v1 Cosmology and Nongalactic Astrophysics

Abstract

The Hydrogen Intensity and Real-time Analysis eXperiment (HIRAX) is a radio interferometer array that is being deployed at the South African Radio Astronomy Observatory (SARAO) Square Kilometer Array (SKA) site in South Africa. Mapping the southern sky, its aim is to observe neutral hydrogen (HI) through intensity mapping (IM) across the redshift range of 0.78-2.55. The observation of HI makes it possible to tomographically probe large cosmological volumes, enabling constraints on, for example, the dark energy equation of state. Systematics are a significant concern in deriving cosmological constraints from HI IM due to the presence of strong foreground signals. Instrumental effects such as dish surface deviations and feed placement errors need to be carefully controlled and monitored to preserve the sensitivity of HIRAX's redundant array configuration. These instrumental systematics cause bright foreground power to leak into the faint cosmological signal. The 6 m parabolic dishes are made from fiberglass with an embedded aluminum mesh that acts as the reflector. The feed is held in place at the prime focus (f/D = 0.21) by four fiberglass legs. This paper presents the dish surface and feed placement precision of the first 28 dishes, derived from photogrammetry metrology measurements taken during the dish fabrication, as well as from measurements in the field. While surface deviations are predominantly well within requirements, feed placement satisfies all accuracy criteria but fails precision limits; however, precision is expected to improve with a larger sample size. These results establish a baseline for modeling primary beam effects, ultimately enabling the characterization and mitigation of systematic errors in the HI IM signal with the full HIRAX array.

Cite

@article{arxiv.2607.26972,
  title  = {Dish Assembly Precision for HIRAX},
  author = {Jennifer Studer and Devin Crichton and Alexandre Refregier and Keshav Bechoo and H. Cynthia Chiang and Chandrachud B. V. Dash and Sindhu Gaddam and Aditya Krishna Karigiri Madhusudhan and Martin Kunz and Kavilan Moodley and Warren Naidoo and Tasmiya Papiah and Isibabale Qhoboshiyane and Liantsoa F. Randrianjanahary and Benjamin R. B. Saliwanchik and Ajith Sampath and Corrie Ungerer and Thierry Viant and Anthony Walters},
  journal= {arXiv preprint arXiv:2607.26972},
  year   = {2026}
}

Comments

14 pages, 8 figures, submitted to Proceedings of SPIE 2026