The CMB Bispectrum
J. R. Fergusson, M. Liguori, E. P. S. Shellard

TL;DR
This paper applies a separable mode expansion estimator to WMAP data to measure the CMB bispectrum, constraining various non-Gaussian models and finding no significant evidence of non-Gaussianity, thus supporting Gaussianity of CMB anisotropies.
Contribution
The paper introduces a versatile mode expansion estimator for the CMB bispectrum and applies it to WMAP data, providing new constraints on multiple non-Gaussian models.
Findings
Constraints on local and equilateral models are consistent with previous results.
New constraints on constant, flattened, and warm inflation models are provided.
No significant non-Gaussianity detected in surveyed feature models.
Abstract
We use a separable mode expansion estimator with WMAP data to estimate the bispectrum for all the primary families of non-Gaussian models. We review the late-time mode expansion estimator methodology which can be applied to any non-separable primordial and CMB bispectrum model, and we demonstrate how the method can be used to reconstruct the CMB bispectrum from an observational map. We extend the previous validation of the general estimator using local map simulations. We apply the estimator to the coadded WMAP 5-year data, reconstructing the WMAP bispectrum using multipoles and orthonormal 3D eigenmodes. We constrain all popular nearly scale-invariant models, ensuring that the theoretical bispectrum is well-described by a convergent mode expansion. Constraints from the local model and the equilateral model ($\Fnl = 25.1\pm…
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