Inevitable imprints of patchy reionization on the cosmic microwave background anisotropy

Author:

Paul Sourabh1ORCID,Mukherjee Suvodip234ORCID,Choudhury Tirthankar Roy5ORCID

Affiliation:

1. Department of Physics and Astronomy, University of the Western Cape, Bellville, Cape Town 7535, South Africa

2. Gravitation Astroparticle Physics Amsterdam (GRAPPA), Anton Pannoekoek Institute for Astronomy and Institute for High-Energy Physics, University of Amsterdam, Science Park 904, NL-1090 GL Amsterdam, The Netherlands

3. Institut d’Astrophysique de Paris, 98bis Boulevard Arago, F-75014 Paris, France

4. Sorbonne Universites, Institut Lagrange de Paris, 98 bis Boulevard Arago, F-75014 Paris, France

5. National Centre for Radio Astrophysics, Tata Institute of Fundamental Research, Pune 411007, India

Abstract

ABSTRACT Reionization of the cosmic neutral hydrogen by the first stars in the Universe is an inhomogeneous process, which produces spatial fluctuations in free electron density. These fluctuations lead to observable signatures in cosmological probes like the cosmic microwave background (CMB). We explore the effect of the electron density fluctuations on CMB using photon-conserving seminumerical simulations of reionization named SCRIPT. We show that the amplitude of the kinematic Sunyaev–Zeldovich (kSZ) and the B-mode polarization signal depends on the patchiness in the spatial distribution of electrons along with the dependence on mid-point and extent of the reionization history. Motivated by this finding, we provide new scaling relations for the amplitude of kSZ and the B-mode polarization signal which can capture the effects arising from the mean optical depth, width of reionization, and spatial fluctuations in the electron density arising from patchy reionization. We show that the amplitude of the kSZ and the B-mode polarization signal exhibits different dependency on the width of reionization and the patchiness of reionization, and hence a joint study of these CMB probes will be able to break the degeneracy. By combining external data sets from 21-cm measurements, the degeneracy can be further lifted by directly exploring the sizes of the ionized regions.

Funder

Department of Atomic Energy, Government of India

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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