Spectral Hierarchy of the Cosmic Web
Francisco-Shu Kitaura, Francesco Sinigaglia

TL;DR
This paper introduces a spectral hierarchy framework for classifying the cosmic web using scale-weighted density fields, unifying various web definitions and linking them to bias models, with demonstrated relevance for large-scale structure analysis.
Contribution
The spectral hierarchy unifies multiple cosmic web classification methods within a single framework and connects them to bias models, enhancing interpretability and practical application.
Findings
Hierarchy retains significant information down to the Nyquist limit.
Local hierarchy levels dominate at nonlinear scales.
Framework is useful for mock-galaxy production and environment studies.
Abstract
We introduce a spectral hierarchy of cosmic-web classifications obtained by applying simple scale-weighting kernels to the density field before performing a standard eigenvalue-based web classification. This unifies and extends several widely used web definitions within a single framework: the familiar potential/tidal web (large-scale, nonlocal), a curvature-based web (more local, peak- and ridge-sensitive), and additional higher-derivative levels that progressively emphasize smaller-scale structure. Because the classification is built from second derivatives of the filtered field, successive hierarchy levels align naturally with operator families that appear in renormalised bias and effective descriptions of large-scale structure, providing an explicit bridge between cosmic-web environments and long- and short-range nonlocal bias ingredients. We quantify the information content of…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Electrical and Electromagnetic Research
