Thermal gravitational-wave background in the general pre-inflationary scenario
Abstract
We investigate the primordial gravitational waves (PGWs) in the general scenario where the inflation is preceded by a pre-inflationary stage with the effective equation of state . Comparing with the results in the usual inflationary models, the power spectrum of PGWs is modified in two aspects: One is the mixture of the perturbation modes caused by he presence of the pre-inflationary period, and the other is the thermal initial state formed at the Planck era of the early Universe. By investigating the observational imprints of these modifications on the B-mode polarization of cosmic microwave background (CMB) radiation, we obtain the constraints on the conformal temperature of the thermal gravitational-wave background Mpc and a tensor-to-scalar ratio ( confident level), which follows the bounds on total number of e-folds for the model with , and for that with . By taking into account various noises and the foreground radiations, we forecast the detection possibility of the thermal gravitational-wave background by the future CMBPol mission, and find that if , the detection is possible as long as Mpc. However, the effect of different is quite small, and it seems impossible to determine its value from the potential observations of CMBPol mission.
Keywords
Cite
@article{arxiv.1608.04189,
title = {Thermal gravitational-wave background in the general pre-inflationary scenario},
author = {Kai Wang and Larissa Santos and Jun-Qing Xia and Wen Zhao},
journal= {arXiv preprint arXiv:1608.04189},
year = {2017}
}
Comments
12 pages, 4 figures, JCAP accepted