Witnessing the rapid growth of disk galaxies over cosmic time using JWST and HST

Fuente: arXiv
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Main Authors: Raji, Samane, Montes, Mireia, Trujillo, Ignacio, Buitrago, Fernando, la Rosa, Carlos Marrero-de, Ramos, Andrés Asensio
Format: Preprint
Published: 2026
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author Raji, Samane
Montes, Mireia
Trujillo, Ignacio
Buitrago, Fernando
la Rosa, Carlos Marrero-de
Ramos, Andrés Asensio
author_facet Raji, Samane
Montes, Mireia
Trujillo, Ignacio
Buitrago, Fernando
la Rosa, Carlos Marrero-de
Ramos, Andrés Asensio
contents Measuring galaxy sizes is fundamental to understanding how galaxies grow and evolve. Traditional methods to measure sizes either trace the concentration of light (i.e., effective radius) or are limited by the depth of the survey (isophotal methods). With the advent of deep, wide surveys, a new physically motivated definition of size has emerged: the edge of the galaxy, defined as the most distant location where star formation has occurred or is still occurring. In this work, we take advantage of the extraordinary depth and spatial resolution of the Hubble and James Webb Space Telescopes to perform an accurate study of galaxy edges at $z=1$. Using 22 photometric bands, we derive radial age and metallicity profiles for two disk galaxies in the GOODS-South field with stellar masses of around $4\times10^{10}\ M_\odot$. The age profiles display a characteristic U-shape, while the metallicity profiles steadily decrease with galactocentric distance. The turnover in the age profile occurs near the galaxy edge, suggesting that stellar migration is responsible for the stars beyond the edge of these galaxies. Comparison with $z=0$ disk galaxies suggests that galaxies at $z=1$ grow inside-out, with little or no increase in mass within the inner 8 kpc, but a significant increase (approximately 300\%) in the outer regions.
format Preprint
id arxiv_https___arxiv_org_abs_2605_15327
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Witnessing the rapid growth of disk galaxies over cosmic time using JWST and HST
Raji, Samane
Montes, Mireia
Trujillo, Ignacio
Buitrago, Fernando
la Rosa, Carlos Marrero-de
Ramos, Andrés Asensio
Astrophysics of Galaxies
Measuring galaxy sizes is fundamental to understanding how galaxies grow and evolve. Traditional methods to measure sizes either trace the concentration of light (i.e., effective radius) or are limited by the depth of the survey (isophotal methods). With the advent of deep, wide surveys, a new physically motivated definition of size has emerged: the edge of the galaxy, defined as the most distant location where star formation has occurred or is still occurring. In this work, we take advantage of the extraordinary depth and spatial resolution of the Hubble and James Webb Space Telescopes to perform an accurate study of galaxy edges at $z=1$. Using 22 photometric bands, we derive radial age and metallicity profiles for two disk galaxies in the GOODS-South field with stellar masses of around $4\times10^{10}\ M_\odot$. The age profiles display a characteristic U-shape, while the metallicity profiles steadily decrease with galactocentric distance. The turnover in the age profile occurs near the galaxy edge, suggesting that stellar migration is responsible for the stars beyond the edge of these galaxies. Comparison with $z=0$ disk galaxies suggests that galaxies at $z=1$ grow inside-out, with little or no increase in mass within the inner 8 kpc, but a significant increase (approximately 300\%) in the outer regions.
title Witnessing the rapid growth of disk galaxies over cosmic time using JWST and HST
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2605.15327