$\mu$-Distortions or Running: A Guaranteed Discovery from CMB Spectrometry
Abstract
We discuss the implications of a PIXIE-like experiment, which would measure -type spectral distortions of the CMB at a level of , with representing an improved sensitivity (e.g. corresponds to PRISM). Using Planck data and considering the six-parameter CDM model, we compute the posterior for and find (). This becomes () when the running of the spectral index is included. We point out that a sensitivity of about PIXIE implies a guaranteed discovery: -distortion is detected or is excluded (both at or higher). This threshold sensitivity sets a clear benchmark for CMB spectrometry. For a combined analysis of PIXIE and current Planck data, we discuss the improvement on measurements of the tilt and the running and the dependence on the choice of the pivot. A fiducial running of (close to the Planck best-fit) leads to a detection of negative running at for PIXIE. A fiducial running of , still compatible with Planck, requires PIXIE to rule out (at ). We propose a convenient and compact visualization of the improving constraints on the tilt, running and tensor-to-scalar ratio.
Keywords
Cite
@article{arxiv.1602.05578,
title = {$\mu$-Distortions or Running: A Guaranteed Discovery from CMB Spectrometry},
author = {Giovanni Cabass and Alessandro Melchiorri and Enrico Pajer},
journal= {arXiv preprint arXiv:1602.05578},
year = {2016}
}
Comments
10+2 pages, 8 figures, 2 tables. Matches published version