paper

Prospects of constraining reionization model parameters using Minkowski tensors and Betti numbers

arXiv:2101.03962 · doi:10.1088/1475-7516/2021/05/026

Abstract

We explore the possibility of constraining model parameters of the Epoch of Reionization (EoR) from 21cm brightness temperature maps, using a combination of morphological descriptors constructed from the eigenvalues of the Contour Minkowski Tensor (CMT), Betti numbers (count of connected regions and holes ) and the area of structures in the excursion set of the field. We use a three parameter model of EoR simulated using 21\textrm{cmFAST}, namely the ionizing efficiency of sources , the minimum virial temperature required for collapse into a halo and the maximum radius for ionizing radiation described by . We performed a Bayesian analysis to recover model parameters for a mock 21cm image from SKA phase I at a redshift of corresponding to a mean neutral hydrogen fraction of . We find that in the absence of noise the average size of structures in the field with is smaller than regions with and the structures are equally isotropic when . We also find that in order to recover the input model to within accuracy for a mock noisy image at a single frequency channel of , for an observation time , the noisy map needs to be smoothed at a scale . Finally we show that the systematic behaviour of the statistic as ionization progresses, enables us to obtain stringent constraints on (with a coefficient of variation as compared to for model parameter constraints), thereby making these descriptors a promising statistic for constraining EoR model parameters and the ionization history of the universe.

Accepted for publication in JCAP