The BINGO/ABDUS Project: Forecast for cosmological parameters from a mock Fast Radio Bursts survey
Abstract
There are various surveys that will provide excellent data to search for and localize Fast Radio Bursts (FRBs). The BINGO project will be one such survey, and this collaboration has already estimated a FRB detection rate that the project will yield. We present a forecast of the future constraints on our current cosmological model that the BINGO FRB detections and localizations will have when added to other current cosmological datasets. We quantify the dispersion measure (DM) as a function of redshift () for the BINGO FRB mock sample. Furthermore, we use current datasets (Supernovae, Baryonic Acoustic Oscillations, and Cosmic Microwave Background data) prior to assessing the efficacy of constraining dark energy models using Monte Carlo methods. Our results show that spatially localized BINGO FRB dataset will provide promising constraints on the population of host galaxies intrinsic DM and be able to measure the nuisance parameters present within a FRB cosmological analysis. They will also provide alternative estimates on other parameters such as the Hubble constant and the dark energy equation of state. In particular, we should see that BINGO FRB data can put constraints on the degenerate plane, which the CMB is incapable of measuring, allowing FRBs to be a viable alternative to BAO to constrain the dark energy equation of state. We conclude that FRBs remain a promising future probe for cosmology and that the FRBs localized by the BINGO project will contribute significantly to our knowledge of the current cosmological model.
Keywords
Cite
@article{arxiv.2411.17516,
title = {The BINGO/ABDUS Project: Forecast for cosmological parameters from a mock Fast Radio Bursts survey},
author = {Xue Zhang and Yu Sang and Gabriel A. Hoerning and Filipe B. Abdalla and Elcio Abdalla and Amilcar Queiroz and Andre A. Costa and Ricardo G. Landim and Chang Feng and Bin Wang and Marcelo V. dos Santos and Thyrso Villela and Carlos A. Wuensche and Jiajun Zhang and Edmar Gurjao and Alessandro Marins and Alexandre Serres and Linfeng Xiao},
journal= {arXiv preprint arXiv:2411.17516},
year = {2025}
}
Comments
18 pages, 10 figures, 2 tables; accepted version by ApJ