Loops abound in the cosmic microwave background: A $4\sigma$ anomaly on super-horizon scales
Pratyush Pranav

TL;DR
This paper identifies a significant anomaly in the topology of the cosmic microwave background maps, specifically in the number of loops at super-horizon scales, suggesting potential new physics or astrophysical phenomena.
Contribution
It introduces a topological analysis using homology characteristics on Planck data, revealing a 4-sigma anomaly in loop counts at large scales not explained by standard Gaussian models.
Findings
4-sigma deviation in loop counts at super-horizon scales
Consistent anomaly across different data releases
Potential implications for non-Gaussianities or universe topology
Abstract
We present a topological analysis of the temperature fluctuation maps from the \emph{Planck 2020} Data release 4 (DR4) based on the \texttt{NPIPE} data processing pipeline. For comparison, we also present the topological characteristics of the maps from \emph{Planck 2018} Data release 3 (DR3). We perform our analysis in terms of the homology characteristics of the maps, invoking relative homology to account for analysis in the presence of masks. We perform our analysis for a range of smoothing scales spanning sub- and super-horizon scales corresponding to . Our main result indicates a significantly anomalous behavior of the loops in the observed maps compared to simulations that are modeled as isotopic and homogeneous Gaussian random fields. Specifically, we observe a deviation between the observation and simulations in the…
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Taxonomy
TopicsCosmology and Gravitation Theories · Fractal and DNA sequence analysis · Dark Matter and Cosmic Phenomena
