Cosmic filament spin -- II: filament spin and its impact on galaxy spin-filament alignment in a cosmological simulation

Fuente: arXiv
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Main Authors: Wang, Peng, Tang, Xiao-Xiao, Wang, Hao-Da, Libeskind, Noam I., Tempel, Elmo, Wang, Wei, Zhang, Youcai, Sheng, Ming-Jie, Yu, Hao-Ran, Xu, Haojie
Format: Preprint
Published: 2025
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author Wang, Peng
Tang, Xiao-Xiao
Wang, Hao-Da
Libeskind, Noam I.
Tempel, Elmo
Wang, Wei
Zhang, Youcai
Sheng, Ming-Jie
Yu, Hao-Ran
Xu, Haojie
author_facet Wang, Peng
Tang, Xiao-Xiao
Wang, Hao-Da
Libeskind, Noam I.
Tempel, Elmo
Wang, Wei
Zhang, Youcai
Sheng, Ming-Jie
Yu, Hao-Ran
Xu, Haojie
contents Observational studies have reported that cosmic filaments on the megaparsec scale exhibit rotational motion. Subsequent simulation studies have shown qualitative agreement with these findings, but quantitative discrepancies remain due to differences in data and methods, which require verification. To address this issue, we adopt the same methodology as used in the observations to identify filament spin from the galaxy distribution constructed from a hydrodynamic simulation. Using the same approach to measure filament spin, we find that the simulation results closely match the observational findings, with only minor discrepancies arising from slight differences in the fraction of filaments classified as dynamically cold or hot based on their dynamic temperature. Additionally, an analysis of how filament spin affects the galaxy spin-filament correlation shows that filaments with strong spin signals and dynamically cold have a greater impact on the galaxy spin-filament correlation than those with weaker spin signals and dynamically hot filaments. These results not only provide further evidence that cosmic filaments exhibit spin, but also highlight the importance of this rotation in the acquisition of angular momentum by individual galaxies. Future studies exploring the influence of filament spin on galaxy spin may shed light on the physical origins of filaments and the angular momentum of galaxies.
format Preprint
id arxiv_https___arxiv_org_abs_2503_10844
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Cosmic filament spin -- II: filament spin and its impact on galaxy spin-filament alignment in a cosmological simulation
Wang, Peng
Tang, Xiao-Xiao
Wang, Hao-Da
Libeskind, Noam I.
Tempel, Elmo
Wang, Wei
Zhang, Youcai
Sheng, Ming-Jie
Yu, Hao-Ran
Xu, Haojie
Cosmology and Nongalactic Astrophysics
Observational studies have reported that cosmic filaments on the megaparsec scale exhibit rotational motion. Subsequent simulation studies have shown qualitative agreement with these findings, but quantitative discrepancies remain due to differences in data and methods, which require verification. To address this issue, we adopt the same methodology as used in the observations to identify filament spin from the galaxy distribution constructed from a hydrodynamic simulation. Using the same approach to measure filament spin, we find that the simulation results closely match the observational findings, with only minor discrepancies arising from slight differences in the fraction of filaments classified as dynamically cold or hot based on their dynamic temperature. Additionally, an analysis of how filament spin affects the galaxy spin-filament correlation shows that filaments with strong spin signals and dynamically cold have a greater impact on the galaxy spin-filament correlation than those with weaker spin signals and dynamically hot filaments. These results not only provide further evidence that cosmic filaments exhibit spin, but also highlight the importance of this rotation in the acquisition of angular momentum by individual galaxies. Future studies exploring the influence of filament spin on galaxy spin may shed light on the physical origins of filaments and the angular momentum of galaxies.
title Cosmic filament spin -- II: filament spin and its impact on galaxy spin-filament alignment in a cosmological simulation
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2503.10844