Document detail
ID

oai:arXiv.org:2411.07458

Topic
Astrophysics - Astrophysics of Gal...
Author
Jia, Cheng Wang, Enci Wang, Huiyuan Li, Hui Yao, Yao Song, Jie Zhang, Hongxin Rong, Yu Chen, Yangyao Yu, Haoran Chen, Zeyu Li, Haixin Ma, Chengyu Kong, Xu
Category

sciences: astrophysics

Year

2024

listing date

11/20/2024

Keywords
star mass formation size 0 \mathrm{m}}$ ${\mu star-forming variation galaxies wavelength
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Abstract

We investigate size variation with rest-frame wavelength for star-forming galaxies based on the second JWST Advanced Deep Extragalactic Survey data release.

Star-forming galaxies are typically smaller at longer wavelength from UV-to-NIR at $z<3.5$, especially for more massive galaxies, indicating the inside-out assembly with in-situ star formation if ignoring dust attenuation.

The size variation with wavelength shows strong dependence on stellar mass, and shows little or no dependence on redshift, specific star formation rate and galaxy environment.

This suggests that the size growth of star-forming galaxies is a self-regulated process primarily governed by stellar mass.

We model size as a function of both mass and redshift simultaneously, obtaining $R_{\rm e} \propto M_*^{0.23} (1+z)^{-1.04}$ at a wavelength of 0.45 ${\mu \mathrm{m}}$, and $R_{\rm e} \propto M_*^{0.20} (1+z)^{-1.08}$ at 1.0 ${\mu \mathrm{m}}$.

Based on this size evolution and the star formation main sequence from the literature, we obtain the locus of typical size growth for individual galaxies of different masses on the mass-size plane.

The moving trend of galaxies on the mass-size plane, which indicates the slopes of their locus, strongly correlates with the size ratio between 0.45 ${\mu \mathrm{m}}$ and 1.0 ${\mu \mathrm{m}}$, supporting the idea that the size variation with wavelength provides important information on size growth of galaxies on short timescales.

;Comment: Accepted for publication in ApJ, 19 pages, 11 figures

Jia, Cheng,Wang, Enci,Wang, Huiyuan,Li, Hui,Yao, Yao,Song, Jie,Zhang, Hongxin,Rong, Yu,Chen, Yangyao,Yu, Haoran,Chen, Zeyu,Li, Haixin,Ma, Chengyu,Kong, Xu, 2024, Size Growth on Short Timescales of Star-Forming Galaxies: Insights from Size Variation with Rest-Frame Wavelength with JADES

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