Observational consequences of Bianchi I spacetimes in loop quantum cosmology

Ivan Agullo, Javier Olmedo, and V. Sreenath
Phys. Rev. D 102, 043523 – Published 26 August 2020

Abstract

Anisotropies generically dominate the earliest stages of expansion of a homogeneous universe. They are particularly relevant in bouncing models, since shears grow in the contracting phase of the cosmos, making the isotropic situation unstable. This paper extends the study of cosmological perturbations in loop quantum cosmology (LQC) to anisotropic Bianchi I models that contain a bounce followed by a phase of slow-roll inflation. We show that, although the shear tensor dilutes and the universe isotropizes soon after the bounce, cosmic perturbations retain memory of this short anisotropic phase. We develop the formalism needed to describe perturbations in anisotropic, effective LQC, and apply it to make predictions for the cosmic microwave background (CMB), while respecting current observational constraints. We show that the anisotropic bounce induces: (i) anisotropic features in all angular correlation functions in the CMB, and in particular a quadrupolar modulation that can account for a similar feature observed in the temperature map by the Planck satellite, and (ii) quantum entanglement between scalar and tensor modes, that manifests itself in temperature-polarization (T-B and E-B) correlations in the CMB.

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  • Received 4 June 2020
  • Accepted 4 August 2020

DOI:https://doi.org/10.1103/PhysRevD.102.043523

© 2020 American Physical Society

Physics Subject Headings (PhySH)

Gravitation, Cosmology & Astrophysics

Authors & Affiliations

Ivan Agullo1, Javier Olmedo1,2, and V. Sreenath3

  • 1Department of Physics and Astronomy, Louisiana State University, Baton Rouge, Louisiana 70803, USA
  • 2Departamento de Física Teórica y del Cosmos, Universidad de Granada, Granada 18071, Spain
  • 3Department of Physics, National Institute of Technology Karnataka, Surathkal, Mangalore 575025, India

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Issue

Vol. 102, Iss. 4 — 15 August 2020

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