Affiliation:
1. Instituto de Astronomía, UNAM , Apdo. Postal 106, Ensenada 22800, B.C. , México
Abstract
ABSTRACT
The cosmic web consists of a nested hierarchy of structures: voids, walls, filaments, and clusters. These structures interconnect and can encompass one another, collectively shaping an intricate network. Here we introduce the Hierarchical Spine (H-Spine) method, a framework designed to hierarchically identify and characterize voids, walls, and filaments. Inspired by the geometrical and dynamical constraints imposed by anisotropic gravitational collapse, the H-Spine method captures the geometry and interconnectivity between cosmic structures as well as their nesting relations, offering a more complete description of the cosmic web compared to single-scale or multiscale approaches. To illustrate the method’s utility, we present the distribution of densities and sizes of voids, walls, and filaments identified in a three-level hierarchical space. This analysis demonstrates how each level within the hierarchy unveils distinctive densities and scales inherent to cosmic web elements.
Funder
John Templeton Foundation
Publisher
Oxford University Press (OUP)
Cited by
1 articles.
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1. Statistical properties of filaments in the cosmic web;Monthly Notices of the Royal Astronomical Society;2024-08-07