English

The BINGO Project II: Instrument Description

Instrumentation and Methods for Astrophysics 2022-08-04 v2 Cosmology and Nongalactic Astrophysics

Abstract

The measurement of diffuse 21-cm radiation from the hyperfine transition of neutral hydrogen (HI signal) in different redshifts is an important tool for modern cosmology. However, detecting this faint signal with non-cryogenic receivers in single-dish telescopes is a challenging task. The BINGO (Baryon Acoustic Oscillations from Integrated Neutral Gas Observations) radio telescope is an instrument designed to detect baryonic acoustic oscillations (BAOs) in the cosmological HI signal, in the redshift interval 0.127z0.4490.127 \le z \le 0.449. This paper describes the BINGO radio telescope, including the current status of the optics, receiver, observational strategy, calibration, and the site. BINGO has been carefully designed to minimize systematics, being a transit instrument with no moving dishes and 28 horns operating in the frequency range 980ν1260980 \le \nu \le 1260 MHz. Comprehensive laboratory tests were conducted for many of the BINGO subsystems and the prototypes of the receiver chain, horn, polarizer, magic tees, and transitions have been successfully tested between 2018 - 2020. The survey was designed to cover 13%\sim 13\% of the sky, with the primary mirror pointing at declination δ=15\delta=-15^{\circ}. The telescope will see an instantaneous declination strip of 14.7514.75^{\circ}. The results of the prototype tests closely meet those obtained during the modeling process, suggesting BINGO will perform according to our expectations. After one year of observations with a 60%60\% duty cycle and 28 horns, BINGO should achieve an expected sensitivity of 102 μK\mu K per 9.33 MHz frequency channel, one polarization, and be able to measure the HI power spectrum in a competitive time frame.

Keywords

Cite

@article{arxiv.2107.01634,
  title  = {The BINGO Project II: Instrument Description},
  author = {Carlos A. Wuensche and Thyrso Villela and Elcio Abdalla and Vincenzo Liccardo and Frederico Vieira and Ian Browne and Michael W. Peel and Christopher Radcliffe and Filipe B. Abdalla and Alessandro Marins and Luciano Barosi and Francisco A. Brito and Amilcar R. Queiroz and Bin Wang and Andre A. Costa and Elisa G. M. Ferreira and Karin S. F. Fornazier and Ricardo G. Landim and Camila P. Novaes and Larissa Santos and Marcelo V. dos Santos and Jiajun Zhang and Tianyue Chen and Jacques Delabrouille and Clive Dickinson and Giancarlo de Gasperis and Edmar C. Gurjão and Stuart Harper and Yin-Zhe Ma and Telmo Machado and Bruno Maffei and Eduardo J. de Mericia and Christian Monstein and Pablo Motta and Carlos H. N. Otobone and Luiz A. Reitano and Mathieu Remazeilles and Sambit Roychowdhury and João R. L. Santos and Alexandre J. R. Serres and Andreia P. Souza and Cesar Strauss and Jordany Vieira and Haiguang Xu},
  journal= {arXiv preprint arXiv:2107.01634},
  year   = {2022}
}

Comments

13 pages, accepted for publication in A&A

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