Moderate Influence of Halo Spin on Stellar Mass Distributions in Dwarf and Massive Galaxies

Fuente: arXiv
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Main Authors: Rong, Yu, Hua, Zichen, Hu, Huijie
Format: Preprint
Published: 2024
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author Rong, Yu
Hua, Zichen
Hu, Huijie
author_facet Rong, Yu
Hua, Zichen
Hu, Huijie
contents We estimate halo spins for HI-rich galaxies in the Arecibo Legacy Fast Alfa Survey using a semi-analytic approach, examining the relationship between halo spin and stellar surface density. Our findings reveal an inverse correlation in both low- and high-mass galaxy samples, with stellar surface density decreasing as halo spin increases. This trend highlights the pivotal role of halo spin in galaxy evolution and suggests a universal formation scenario: high-spin halos, accompanied by high-spin accreted gas, retain angular momentum, preventing gas from efficiently condensing in the galactic center and thus suppressing star formation. Consequently, weak feedback redistributes gas to the halo outskirts without significant expulsion. The shallower central gravitational potential in high-spin halos promotes outward stellar migration, leading to more extended stellar distributions and lower stellar surface densities.
format Preprint
id arxiv_https___arxiv_org_abs_2411_12210
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Moderate Influence of Halo Spin on Stellar Mass Distributions in Dwarf and Massive Galaxies
Rong, Yu
Hua, Zichen
Hu, Huijie
Astrophysics of Galaxies
We estimate halo spins for HI-rich galaxies in the Arecibo Legacy Fast Alfa Survey using a semi-analytic approach, examining the relationship between halo spin and stellar surface density. Our findings reveal an inverse correlation in both low- and high-mass galaxy samples, with stellar surface density decreasing as halo spin increases. This trend highlights the pivotal role of halo spin in galaxy evolution and suggests a universal formation scenario: high-spin halos, accompanied by high-spin accreted gas, retain angular momentum, preventing gas from efficiently condensing in the galactic center and thus suppressing star formation. Consequently, weak feedback redistributes gas to the halo outskirts without significant expulsion. The shallower central gravitational potential in high-spin halos promotes outward stellar migration, leading to more extended stellar distributions and lower stellar surface densities.
title Moderate Influence of Halo Spin on Stellar Mass Distributions in Dwarf and Massive Galaxies
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2411.12210