Evolution of the Sérsic Index up to z=2.5 from JWST and HST
arXiv:2501.02956 · doi:10.1051/0004-6361/202452919
Abstract
The James Webb Space Telescope (JWST) is unveiling the rest-frame near-IR structure of galaxies. We measure the evolution with redshift of the rest-frame optical and near-IR Sérsic index (), and examine the dependence on stellar mass and star-formation activity across the redshift range . We infer rest-frame near-IR Sérsic profiles for galaxies in publicly available NIRCam imaging mosaics from the COSMOS-Web and PRIMER surveys. We augment these with rest-frame optical Sérsic indices, previously measured from HST imaging mosaics. The median Sérsic index evolves slowly or not at all with redshift, except for very high-mass galaxies (), which show an increase from to at . High-mass galaxies have higher than lower-mass galaxies () at all redshifts, with a stronger dependence in the rest-frame near-IR than in the rest-frame optical at . This wavelength dependence is caused by star-forming galaxies that have lower optical than near-IR at z>1 (but not at z<1). Both at optical and near-IR wavelengths, star-forming galaxies have lower than quiescent galaxies, fortifying the connection between star-formation activity and radial stellar mass distribution. At the median near-IR varies strongly with star formation activity, but not with stellar mass. The scatter in near-IR is higher in the green valley (0.25 dex) than on the star-forming sequence and among quiescent galaxies (0.18 dex) -- this trend is not seen in the optical because dust and young stars contribute to the variety in optical light profiles. Our newly measured rest-frame near-IR radial light profiles motivate future comparisons with radial stellar mass profiles of simulated galaxies as a stringent constraint on processes that govern galaxy formation.
Accepted for publication on A&A
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