Improved cosmological fits with quantized primordial power spectra
Abstract
We observationally examine cosmological models based on primordial power spectra with quantized wavevectors. Introducing a linearly quantized power spectrum with and spacing provides a better fit to the Planck 2018 observations than the concordance baseline, with . Extending the results of Lasenby et al [1], we show that the requirement for perturbations to remain finite beyond the future conformal boundary in a universe containing dark matter and a cosmological constant results in a linearly quantized primordial power spectrum. It is found that the infrared cutoffs for this future conformal boundary quantized cosmology do not provide cosmic microwave background power spectra compatible with observations, but future theories may predict more observationally consistent quantized spectra.
Cite
@article{arxiv.2104.01938,
title = {Improved cosmological fits with quantized primordial power spectra},
author = {D. J. Bartlett and W. J. Handley and A. N. Lasenby},
journal= {arXiv preprint arXiv:2104.01938},
year = {2022}
}
Comments
14 pages, 8 figures, prepared for submission to PRD