The Cosmic Web: Geometric Analysis
Rien van de Weygaert, Willem Schaap (Kapteyn Astronomical Institute,, University Groningen, the Netherlands)

TL;DR
This paper introduces the Delaunay Tessellation Field Estimator (DTFE) for analyzing the cosmic web, effectively capturing its hierarchical, anisotropic, and void-rich structure through adaptive interpolation techniques.
Contribution
It presents the DTFE method as a novel, adaptive approach for reconstructing cosmic web structures, demonstrating its effectiveness in simulations and observational data.
Findings
DTFE accurately reconstructs complex cosmic web patterns
It preserves hierarchical and anisotropic features of the cosmic matter distribution
DTFE shows promising results in analyzing cosmic velocity fields
Abstract
The lecture notes describe the Delaunay Tessellation Field Estimator for Cosmic Web analysis. The high sensitivity of Voronoi/Delaunay tessellations to the local point distribution is used to obtain estimates of density and related quantities. The adaptive and minimum triangulation properties of Delaunay tessellations are utilized for interpolation to continuous volume-covering density and velocity fields. The adaptivity to the local density and geometry preserves three key characteristics of the cosmic matter distribution: 1) its hierarchical nature,2) its anisotropic weblike morphology, 3) the presence and structure of voids. The lecture notes discuss the mathematical context and background of the DTFE method, in essence a first order version of Natural Neighbour methods, smooth and higher order spatial interpolation techniques. This is followed by an outline of the DTFE procedure. A…
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