Constraining regularization ambiguities in Loop Quantum Cosmology via CMB
Bao-Fei Li, Meysam Motaharfar, Parampreet Singh

TL;DR
This paper compares different regularization schemes in loop quantum cosmology by analyzing their effects on the primordial and angular power spectra, highlighting how these models differ in their observational predictions.
Contribution
It systematically evaluates the observational signatures of regularization ambiguities in loop quantum cosmology using multiple approaches and initial conditions.
Findings
Hybrid approach yields smaller deviations from ΛCDM at large angles.
mLQC-I closely matches standard cosmology at large scales.
mLQC-II shows the largest deviations and is most disfavored.
Abstract
In order to investigate the potential observational signals of different regularization ambiguities in loop quantum cosmological models, we systematically compute and compare the primordial scalar power spectra and the resulting angular power spectra in the standard loop quantum cosmology (LQC) and its Thiemann regularized versions -- modified LQC-I/II (mLQC-I/II), using both the dressed metric and the hybrid approaches. All three loop quantum cosmological models yield a non-singular bounce with a post-bounce physics that converges rapidly in a few Planck seconds. Using Starobinsky potential and the initial conditions for the background dynamics chosen to yield the same inflationary e-foldings, which are fixed to be in all three LQC models, we require that all three models result in the same scale-invariant regime for the primordial power spectrum with a relative difference of less…
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Taxonomy
TopicsCosmology and Gravitation Theories · Dark Matter and Cosmic Phenomena · Quantum Information and Cryptography
