Constraining the physical properties of the first lensed z ∼ 9 − 16 galaxy candidates with JWST

Author:

Furtak Lukas J1ORCID,Shuntov Marko2,Atek Hakim2ORCID,Zitrin Adi1ORCID,Richard Johan3ORCID,Lehnert Matthew D3,Chevallard Jacopo4ORCID

Affiliation:

1. Physics Department, Ben-Gurion, University of the Negev , P.O. Box 653, Be’er-Sheva 84105, Israel

2. Institut d’Astrophysique de Paris, CNRS, Sorbonne Université , 98bis Boulevard Arago, F-75014 Paris, France

3. Univ Lyon, Univ Lyon1, Ens de Lyon, CNRS , Centre de Recherche Astrophysique de Lyon UMR5574, F-69230 Saint-Genis Laval, France

4. Department of Physics, University of Oxford , Denys Wilkinson Building, Keble Road, Oxford OX1 3RH, UK

Abstract

ABSTRACT The first deep-field observations of the JWST have immediately yielded a surprisingly large number of very high redshift candidates, pushing the frontier of observability well beyond z ≳ 10. We here present a detailed SED-fitting analysis of the 10 gravitationally lensed z ∼ 9–16 galaxy candidates detected behind the galaxy cluster SMACS J0723.3−7327 in a previous paper using the BEAGLE tool. Our analysis makes use of dynamical considerations to place limits on the ages of these galaxies and of all three published SL models of the cluster to account for lensing systematics. We find the majority of these galaxies to have relatively low stellar masses $M_{\star }\sim 10^7-10^8\, \mathrm{M}_{\odot }$ and young ages tage ∼ 10–100 Myr but with a few higher mass exceptions ($M_{\star }\sim 10^9\rm{-}10^{10}\, \mathrm{M}_{\odot }$) due to Balmer-break detections at z ∼ 9–10. Because of their very blue UV-slopes, down to β ∼ −3, all of the galaxies in our sample have extremely low dust attenuations AV ≲ 0.02. Placing the measured parameters into relation, we find a very shallow M⋆ − MUV-slope and high sSFRs above the main sequence of star formation with no significant redshift-evolution in either relation. This is in agreement with the bright UV luminosities measured for these objects and indicates that we are naturally selecting UV-bright galaxies that are undergoing intense star formation at the time they are observed. Finally, we discuss the robustness of our high-redshift galaxy sample regarding low-redshift interlopers and conclude that low-redshift solutions can safely be ruled out for roughly half of the sample, including the highest redshift galaxies at z ∼ 12–16. These objects represent compelling targets for spectroscopic follow-up observations with JWST and ALMA.

Funder

United States-Israel Binational Science Foundation

National Science Foundation

CNES

European Research Council

NASA

ESA

CSA

STScI

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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