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Cosmic Web Dynamics: Forces and Strains

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arxiv 2407.16489 v1 pith:B6QF2KIY submitted 2024-07-23 astro-ph.CO

classification astro-ph.CO
keywords voidscosmicfilamentsfieldgravitationalinfluencetidalcluster
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abstract

This study concerns an inventory of the gravitational force and tidal field induced by filaments, walls, cluster nodes and voids on Megaparsec scales and how they assemble and shape the Cosmic Web. The study is based on a N$_{\rm Part}=512^3$ $\Lambda$CDM dark matter only N-body simulation in a (300$h^{-1}$~Mpc)$^3$ box at $z=0$. We invoke the density field NEXUS+ multiscale morphological procedure to assign the appropriate morphological feature to each location. We then determine the contribution by each of the cosmic web components to the local gravitational and tidal forces. We find that filaments are, by far, the dominant dynamical component in the interior of filaments, in the majority of underdense void regions and in all wall regions. The gravitational influence of cluster nodes is limited, and they are only dominant in their immediate vicinity. The force field induced by voids is marked by divergent outflowing patterns, yielding the impression of a segmented volume in which voids push matter towards their boundaries. Voids manifest themselves strongly in the tidal field as a cellular tapestry that is closely linked to the multiscale cosmic web. However, even within the interior of voids, the dynamical influence of the surrounding filaments is stronger than the outward push by voids. Therefore, the dynamics of voids cannot be understood without taking into account the influence of the environment. We conclude that filaments constitute the overpowering gravitational agent of the cosmic web, while voids are responsible for the cosmic web's spatial organisation and hence of its spatial connectivity.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The cosmic web's Lyman-$\alpha$ glow at $z \approx 2.5$; hydrodynamic models, dust, and wide-field, narrow-band detection

    astro-ph.CO 2025-10 conditional novelty 6.0 of 10

    Five cosmological simulations predict that the faint ultraviolet excess seen by the Condor telescope at z≈2.5 is Lyman-alpha light from the cosmic web, with measurable detection thresholds for wide-field surveys.

  2. Observed Anti-parallel Correlation Between Spiral Galaxy and Cosmic Filament Spins

    astro-ph.GA 2025-06 conditional novelty 6.0 of 10

    Low-mass spiral galaxies prefer to spin in the direction opposite to the spin of their host cosmic filament, while high-mass spirals do not.

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