Constraining the properties of Population III galaxies with multiwavelength observations

Author:

Pochinda S12ORCID,Gessey-Jones T12ORCID,Bevins H T J12ORCID,Fialkov A23,Heimersheim S23ORCID,Abril-Cabezas I24ORCID,de Lera Acedo E12,Singh S5,Sikder S6ORCID,Barkana R6

Affiliation:

1. Astrophysics Group, Cavendish Laboratory , J. J. Thomson Avenue, Cambridge CB3 0HE , UK

2. Kavli Institute for Cosmology , Madingley Road, Cambridge CB3 0HA , UK

3. Institute of Astronomy, University of Cambridge , Madingley Road, Cambridge CB3 0HA , UK

4. DAMTP, Centre for Mathematical Sciences, University of Cambridge , Wilberforce Road, Cambridge CB3 OWA , UK

5. Raman Research Institute , C V Raman Avenue, Sadashivanagar, Bangalore 560080 , India

6. School of Physics and Astronomy, Tel-Aviv University , Tel-Aviv 69978 , Israel

Abstract

ABSTRACT The early Universe, spanning 400 000 to 400 million years after the big bang (z ≈ 1100–11), has been left largely unexplored as the light from luminous objects is too faint to be observed directly. While new experiments are pushing the redshift limit of direct observations, measurements in the low-frequency radio band promise to probe early star and black hole formation via observations of the hydrogen 21-cm line. In this work, we explore synergies between 21-cm data from the HERA and SARAS 3 experiments and observations of the unresolved radio and X-ray backgrounds using multiwavelength Bayesian analysis. We use the combined data set to constrain properties of Population II and Population III stars as well as early X-ray and radio sources. The joint fit reveals a 68 percentile disfavouring of Population III star formation efficiencies $\gtrsim 5.7~{{\ \rm per\ cent}}$. We also show how the 21-cm and the X-ray background data synergistically constrain opposite ends of the X-ray efficiency prior distribution to produce a peak in the 1D posterior of the X-ray luminosity per star formation rate. We find (at 68 per cent confidence) that early galaxies were likely 0.3–318 times as X-ray efficient as present-day starburst galaxies. We also show that the functional posteriors from our joint fit rule out global 21-cm signals deeper than ≲−203 mK and power spectrum amplitudes at k = 0.34 h Mpc−1 greater than $\Delta _{21}^2 \gtrsim 946\ \mathrm{mK}^2$ with 3σ confidence.

Funder

Science and Technology Facilities Council

Israel Science Foundation

Engineering and Physical Sciences Research Council

Publisher

Oxford University Press (OUP)

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