arXiv · 1911.06378
Information Theoretic Bounds on Cosmic String Detection in CMB Maps with Noise
Abstract
We use a convolutional neural network (CNN) to study cosmic string detection in cosmic microwave background (CMB) flat sky maps with Nambu-Goto strings. On noiseless maps we can measure string tensions down to order $10^{-9}$, however when noise is included we are unable to measure string tensions below $10^{-7}$. Motivated by this impasse, we derive an information theoretic bound on the detection of the cosmic string tension $Gμ$ from CMB maps. In particular we bound the information entropy of the posterior distribution of $Gμ$ in terms of the resolution, noise level and total survey area of the CMB map. We evaluate these bounds for the ACT, SPT-3G, Simons Observatory, Cosmic Origins Explorer, and CMB-S4 experiments. These bounds cannot be saturated by any method.
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Razvan Ciuca, Oscar F. Hernández. 2021-06-01. Information Theoretic Bounds on Cosmic String Detection in CMB Maps with Noise. https://doi.org/10.1093/mnras%2Fstz3551
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