The multi-component fitting to the star formation histories in the TNG simulation

Fuente: arXiv
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Autori principali: Wang, Yang, Dong, Chengxing, Ruan, Hengxin, Lin, Qiufan, Zhang, Yucheng, Chen, Shupei
Natura: Preprint
Pubblicazione: 2024
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author Wang, Yang
Dong, Chengxing
Ruan, Hengxin
Lin, Qiufan
Zhang, Yucheng
Chen, Shupei
author_facet Wang, Yang
Dong, Chengxing
Ruan, Hengxin
Lin, Qiufan
Zhang, Yucheng
Chen, Shupei
contents The star formation history (SFH) is a key issue in the evolution of galaxies. In this work, we developed a model based on a Gaussian and gamma function mixture to fit SFHs with varying numbers of components. Our primary objective was to use this model to reveal the shape of SFHs and the corresponding physical driving factors. Specifically, we applied this model to fit SFHs from the TNG100-1 simulation. Our study led to the following findings: 1) Our model fits with TNG star formation histories well, especially for high-mass and red galaxies; 2) A clear relationship exists between the number and shape of fitted components and the mass and color of galaxies, with notable differences observed between central/isolated and satellite galaxies. 3) Our model allowed us to extract different episodes of star formation within star formation histories with ease and analyze the duration and timing of each star formation episode. Our findings indicated a strong relationship between the timing of each star formation episode and galaxy mass and color.
format Preprint
id arxiv_https___arxiv_org_abs_2406_13254
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The multi-component fitting to the star formation histories in the TNG simulation
Wang, Yang
Dong, Chengxing
Ruan, Hengxin
Lin, Qiufan
Zhang, Yucheng
Chen, Shupei
Astrophysics of Galaxies
The star formation history (SFH) is a key issue in the evolution of galaxies. In this work, we developed a model based on a Gaussian and gamma function mixture to fit SFHs with varying numbers of components. Our primary objective was to use this model to reveal the shape of SFHs and the corresponding physical driving factors. Specifically, we applied this model to fit SFHs from the TNG100-1 simulation. Our study led to the following findings: 1) Our model fits with TNG star formation histories well, especially for high-mass and red galaxies; 2) A clear relationship exists between the number and shape of fitted components and the mass and color of galaxies, with notable differences observed between central/isolated and satellite galaxies. 3) Our model allowed us to extract different episodes of star formation within star formation histories with ease and analyze the duration and timing of each star formation episode. Our findings indicated a strong relationship between the timing of each star formation episode and galaxy mass and color.
title The multi-component fitting to the star formation histories in the TNG simulation
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2406.13254