Cosmic microwave background bispectrum and slow roll inflation
Abstract
Recent tentative findings of non-Gaussian structure in the COBE-DMR dataset have triggered renewed attention to candidate models from which such intrinsic signature could arise. In the framework of slow roll inflation with built-in non linearities in the inflaton field evolution we present expressions for both the cosmic microwave background (CMB) skewness and the full angular bispectrum in terms of the slow roll parameters. We use an estimator for the angular bispectrum recently proposed in the literature and calculate its variance for an arbitrary multipole combination. We stress that a real detection of non-Gaussianity in the CMB would imply that an important component of the anisotropies arises from processes {\it other} than primordial quantum fluctuations. We further investigate the behavior of the signal-to-(theoretical) noise ratio and demonstrate for generic inflationary models that it decreases in the limited range of small-'s considered for increasing multipole while the opposite applies for the standard 's.
Cite
@article{arxiv.astro-ph/9908009,
title = {Cosmic microwave background bispectrum and slow roll inflation},
author = {Alejandro Gangui and Jerome Martin},
journal= {arXiv preprint arXiv:astro-ph/9908009},
year = {2009}
}
Comments
15 pages, 3 figures, minor corrections Ref: MNRAS 313, 323 (2000)