Assembly of filamentary void galaxy configurations
Steven Rieder, Rien van de Weygaert, Marius Cautun, Burcu Beygu and, Simon Portegies Zwart

TL;DR
This study investigates the formation and evolution of filamentary dark matter halo configurations in cosmic voids, using high-resolution simulations to compare with observed systems like VGS_31, revealing diverse formation histories and environmental structures.
Contribution
The paper presents the first detailed simulation-based analysis of VGS_31-like systems in voids, highlighting their formation times, environmental evolution, and structural diversity, which were previously uncharacterized.
Findings
VGS_31-like systems have diverse formation times, from 10 Gyr ago to present.
All systems are embedded in intra-void walls that become prominent by z=0.5.
Approximately half of the systems show complex substructure within the walls.
Abstract
We study the formation and evolution of filamentary configurations of dark matter haloes in voids. Our investigation uses the high-resolution LambdaCDM simulation CosmoGrid to look for void systems resembling the VGS_31 elongated system of three interacting galaxies that was recently discovered by the Void Galaxy Survey (VGS) inside a large void in the SDSS galaxy redshift survey. HI data revealed these galaxies to be embedded in a common elongated envelope, possibly embedded in intravoid filament. In the CosmoGrid simulation we look for systems similar to VGS_31 in mass, size and environment. We find a total of eight such systems. For these systems, we study the distribution of neighbour haloes, the assembly and evolution of the main haloes and the dynamical evolution of the haloes, as well as the evolution of the large-scale structure in which the systems are embedded. The spatial…
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