The Milky Way atlas for linear filaments II. clump rotation versus filament orientation

Fuente: arXiv
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Main Authors: Xu, Xuefang, Wang, Ke, Gou, Qian, Baug, Tapas, Li, Di, Duan, Chunguo, Lei, Juncheng
Format: Preprint
Published: 2024
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author Xu, Xuefang
Wang, Ke
Gou, Qian
Baug, Tapas
Li, Di
Duan, Chunguo
Lei, Juncheng
author_facet Xu, Xuefang
Wang, Ke
Gou, Qian
Baug, Tapas
Li, Di
Duan, Chunguo
Lei, Juncheng
contents Dense clumps distributed along filaments are the immediate medium for star formation. Kinematic properties of the clumps, such as velocity gradient and angular momentum, combined with filament orientation, provide important clues to the formation mechanism of filament-clump configurations and the role of filaments in star formation. By cross-matching the Milky Way atlas for linear filaments and the Structure, Excitation and Dynamics of the Inner Galactic Interstellar Medium (SEDIGISM) 13CO (2-1) data, we aim to derive the velocity gradient and its direction, the specific angular momentum (J/M), and the ratio (β) between the rotational energy and gravitational energy of clumps, as well as to investigate the alignment between clump rotation and filament orientation. We found a monotonic increase in J/M as a function of clump size (R), following a power-law relation J/M~\propto~R^{1.5\pm0.2}. The ratio βranges from 1.1~\times~10^{-5} to 0.1, with a median value 1.0~\times~10^{-3}, suggesting that clump rotation provides insignificant support against gravitational collapse. The distribution of the angle between clump rotation and natal filament orientation is random, indicating that the clumps' rotational axes have no discernible correlation with the orientation of their hosting filaments. Counting only the most massive clump in each filament also finds no alignment between clump rotation and filament orientation.
format Preprint
id arxiv_https___arxiv_org_abs_2410_12215
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Milky Way atlas for linear filaments II. clump rotation versus filament orientation
Xu, Xuefang
Wang, Ke
Gou, Qian
Baug, Tapas
Li, Di
Duan, Chunguo
Lei, Juncheng
Astrophysics of Galaxies
Dense clumps distributed along filaments are the immediate medium for star formation. Kinematic properties of the clumps, such as velocity gradient and angular momentum, combined with filament orientation, provide important clues to the formation mechanism of filament-clump configurations and the role of filaments in star formation. By cross-matching the Milky Way atlas for linear filaments and the Structure, Excitation and Dynamics of the Inner Galactic Interstellar Medium (SEDIGISM) 13CO (2-1) data, we aim to derive the velocity gradient and its direction, the specific angular momentum (J/M), and the ratio (β) between the rotational energy and gravitational energy of clumps, as well as to investigate the alignment between clump rotation and filament orientation. We found a monotonic increase in J/M as a function of clump size (R), following a power-law relation J/M~\propto~R^{1.5\pm0.2}. The ratio βranges from 1.1~\times~10^{-5} to 0.1, with a median value 1.0~\times~10^{-3}, suggesting that clump rotation provides insignificant support against gravitational collapse. The distribution of the angle between clump rotation and natal filament orientation is random, indicating that the clumps' rotational axes have no discernible correlation with the orientation of their hosting filaments. Counting only the most massive clump in each filament also finds no alignment between clump rotation and filament orientation.
title The Milky Way atlas for linear filaments II. clump rotation versus filament orientation
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2410.12215