JWST UNCOVERs the Optical Size - Stellar Mass Relation at $4<z<8$: Rapid Growth in the Sizes of Low Mass Galaxies in the First Billion Years of the Universe

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Main Authors: Miller, Tim B., Suess, Katherine A., Setton, David J., Price, Sedona H., Labbe, Ivo, Bezanson, Rachel, Brammer, Gabriel, Cutler, Sam E., Furtak, Lukas J., Leja, Joel, Pan, Richard, Wang, Bingjie, Weaver, John R., Whitaker, Katherine E., Dayal, Pratika, de Graaff, Anna, Feldmann, Robert, Greene, Jenny E., Fujimoto, S., Maseda, Michael V., Nanayakkara, Themiya, Nelson, Erica J., van Dokkum, Pieter, Zitrin, Adi
Format: Preprint
Published: 2024
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author Miller, Tim B.
Suess, Katherine A.
Setton, David J.
Price, Sedona H.
Labbe, Ivo
Bezanson, Rachel
Brammer, Gabriel
Cutler, Sam E.
Furtak, Lukas J.
Leja, Joel
Pan, Richard
Wang, Bingjie
Weaver, John R.
Whitaker, Katherine E.
Dayal, Pratika
de Graaff, Anna
Feldmann, Robert
Greene, Jenny E.
Fujimoto, S.
Maseda, Michael V.
Nanayakkara, Themiya
Nelson, Erica J.
van Dokkum, Pieter
Zitrin, Adi
author_facet Miller, Tim B.
Suess, Katherine A.
Setton, David J.
Price, Sedona H.
Labbe, Ivo
Bezanson, Rachel
Brammer, Gabriel
Cutler, Sam E.
Furtak, Lukas J.
Leja, Joel
Pan, Richard
Wang, Bingjie
Weaver, John R.
Whitaker, Katherine E.
Dayal, Pratika
de Graaff, Anna
Feldmann, Robert
Greene, Jenny E.
Fujimoto, S.
Maseda, Michael V.
Nanayakkara, Themiya
Nelson, Erica J.
van Dokkum, Pieter
Zitrin, Adi
contents We study the rest-frame optical and ultraviolet morphology of galaxies in the first billion years of the Universe. Using JWST data from the UNCOVER and MegaScience surveys targeting the lensing cluster Abell 2744 we present multi-band morphological measurements for a sample of 995 galaxies selected using 20-band NIRCam photometry and 35 using NIRSpec Prism spectroscopy over the redshift range of $4<z<8$. The wavelength-dependent morphology is measured using pysersic by simultaneously modeling the images in 6 NIRCam wide filters covering the rest-frame UV to optical. The joint modeling technique increases the precision of measured radii by 50\%. Galaxies in our sample show a wide range of Sersic indices, with no systematic difference between optical and UV morphology. We model the size-mass relation in a Bayesian manner using a continuity model to directly fit the redshift evolution while accounting for observational uncertainties. We find the average size of galaxies at $\log M_*/M_\odot=8.5$ grows rapidly, from 400 pc at $z=8$ to 830 pc at $z=4$. This is faster evolution than expected from power law scalings of the Hubble parameter or scale factor that describe well previous results at $z<2$. This suggests that different and/or much stronger processes affect low mass systems during the epoch of reionization. The measured logarithmic slope (0.25) and scatter (0.23 dex) are non-evolving. We discuss the remarkable consistency of the slope and scatter over cosmic time in the context of the galaxy-halo connection.
format Preprint
id arxiv_https___arxiv_org_abs_2412_06957
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle JWST UNCOVERs the Optical Size - Stellar Mass Relation at $4<z<8$: Rapid Growth in the Sizes of Low Mass Galaxies in the First Billion Years of the Universe
Miller, Tim B.
Suess, Katherine A.
Setton, David J.
Price, Sedona H.
Labbe, Ivo
Bezanson, Rachel
Brammer, Gabriel
Cutler, Sam E.
Furtak, Lukas J.
Leja, Joel
Pan, Richard
Wang, Bingjie
Weaver, John R.
Whitaker, Katherine E.
Dayal, Pratika
de Graaff, Anna
Feldmann, Robert
Greene, Jenny E.
Fujimoto, S.
Maseda, Michael V.
Nanayakkara, Themiya
Nelson, Erica J.
van Dokkum, Pieter
Zitrin, Adi
Astrophysics of Galaxies
We study the rest-frame optical and ultraviolet morphology of galaxies in the first billion years of the Universe. Using JWST data from the UNCOVER and MegaScience surveys targeting the lensing cluster Abell 2744 we present multi-band morphological measurements for a sample of 995 galaxies selected using 20-band NIRCam photometry and 35 using NIRSpec Prism spectroscopy over the redshift range of $4<z<8$. The wavelength-dependent morphology is measured using pysersic by simultaneously modeling the images in 6 NIRCam wide filters covering the rest-frame UV to optical. The joint modeling technique increases the precision of measured radii by 50\%. Galaxies in our sample show a wide range of Sersic indices, with no systematic difference between optical and UV morphology. We model the size-mass relation in a Bayesian manner using a continuity model to directly fit the redshift evolution while accounting for observational uncertainties. We find the average size of galaxies at $\log M_*/M_\odot=8.5$ grows rapidly, from 400 pc at $z=8$ to 830 pc at $z=4$. This is faster evolution than expected from power law scalings of the Hubble parameter or scale factor that describe well previous results at $z<2$. This suggests that different and/or much stronger processes affect low mass systems during the epoch of reionization. The measured logarithmic slope (0.25) and scatter (0.23 dex) are non-evolving. We discuss the remarkable consistency of the slope and scatter over cosmic time in the context of the galaxy-halo connection.
title JWST UNCOVERs the Optical Size - Stellar Mass Relation at $4<z<8$: Rapid Growth in the Sizes of Low Mass Galaxies in the First Billion Years of the Universe
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2412.06957