Deep Neural Networks for estimation of gamma-ray burst redshifts

Author:

Aldowma Tamador12ORCID,Razzaque Soebur134ORCID

Affiliation:

1. Centre for Astro-Particle Physics (CAPP) and Department of Physics, University of Johannesburg , PO Box 524, Auckland Park 2006 , South Africa

2. Department of Astronomy and Meteorology, Faculty of Science and Technology, Omdurman Islamic University , PO Box 382, Omdurman, 14415 , Sudan

3. Department of Physics, The George Washington University , Washington, DC 20052 , USA

4. National Institute for Theoretical and Computational Sciences (NITheCS) , Private Bag X1, Matieland , South Africa

Abstract

ABSTRACT While the available set of gamma-ray burst (GRB) data with known redshift is currently limited, a much larger set of GRB data without redshift is available from different instruments. This data includes well-measured prompt gamma-ray flux and spectral information. We estimate the redshift of a selection of these GRBs detected by Fermi-GBM and Konus-Wind using machine learning techniques that are based on spectral parameters. We find that Deep Neural Networks with Random Forest models employing non-linear relations among input parameters can reasonably reproduce the pseudo-redshift distribution of GRBs, mimicking the distribution of GRBs with spectroscopic redshift. Furthermore, we find that the pseudo-redshift samples of GRBs to satisfy (i) Amati relation between the peak photon energy of the time-averaged energy spectrum in the cosmological rest frame of the GRB Ei,p and the isotropic-equivalent radiated energy Eiso during the prompt phase; and (ii) Yonetoku relation between Ei,p and isotropic-equivalent luminosity Liso, both measured during the peak flux interval.

Funder

National Research Foundation

Publisher

Oxford University Press (OUP)

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