Gravitational-wave cosmology across 29 decades in frequency
Abstract
Quantum fluctuations of the gravitational field in the early Universe, amplified by inflation, produce a primordial gravitational-wave background across a broad frequency band. We derive constraints on the spectrum of this gravitational radiation, and hence on theories of the early Universe, by combining experiments that cover 29 orders of magnitude in frequency. These include Planck observations of cosmic microwave background temperature and polarization power spectra and lensing, together with baryon acoustic oscillations and big bang nucleosynthesis measurements, as well as new pulsar timing array and ground-based interferometer limits. While individual experiments constrain the gravitational-wave energy density in specific frequency bands, the combination of experiments allows us to constrain cosmological parameters, including the inflationary spectral index, , and the tensor-to-scalar ratio, . Results from individual experiments include the most stringent nanohertz limit of the primordial background to date from the Parkes Pulsar Timing Array, . Observations of the cosmic microwave background alone limit the gravitational-wave spectral index at 95\% confidence to for a tensor-to-scalar ratio of . However, the combination of all the above experiments limits . Future Advanced LIGO observations are expected to further constrain by 2020. When cosmic microwave background experiments detect a non-zero , our results will imply even more stringent constraints on and hence theories of the early Universe.
Keywords
Cite
@article{arxiv.1511.05994,
title = {Gravitational-wave cosmology across 29 decades in frequency},
author = {Paul D. Lasky and Chiara M. F. Mingarelli and Tristan L. Smith and John T. Giblin and Eric Thrane and Daniel J. Reardon and Robert Caldwell and Matthew Bailes and N. D. Ramesh Bhat and Sarah Burke-Spolaor and Shi Dai and James Dempsey and George Hobbs and Matthew Kerr and Yuri Levin and Richard N. Manchester and Stefan Osłowski and Vikram Ravi and Pablo A. Rosado and Ryan M. Shannon and Renée Spiewak and Willem van Straten and Lawrence Toomey and Jingbo Wang and Linqing Wen and Xiaopeng You and Xingjiang Zhu},
journal= {arXiv preprint arXiv:1511.05994},
year = {2016}
}
Comments
accepted for publication in Physical Review X