Scinovex
article Open AccessTop 1% cited

CEERS Key Paper. I. An Early Look into the First 500 Myr of Galaxy Formation with JWST

The Astrophysical Journal Letters · 2023 · Vol. 946(1) · pp. L13–L13
Steven L. FinkelsteinMicaela B. BagleyHenry C. FergusonStephen M. WilkinsJeyhan S. KartaltepeCasey PapovichL. Y. Aaron YungPablo Arrabal HaroPeter BehrooziMark DickinsonDale D. KocevskiAnton M. KoekemoerRebecca L. LarsonAurélien Le BailAlexa M. MoralesPablo G. Pérez‐GonzálezD. BurgarellaRomeel DavéMichaela HirschmannRachel S. SomervilleStijn WuytsVolker BrommCaitlin M. CaseyA. FontanaSeiji FujimotoJonathan P. GardnerMauro GiavaliscoA. GrazianNorman A. GroginNimish P. HathiTaylor A. HutchisonSaurabh W. JhaShardha JogeeLisa J. KewleyAllison KirkpatrickArianna S. LongJennifer M. LotzL. PentericciJustin PierelNor PirzkalSwara RavindranathRussell E. RyanJonathan R. TrumpGuang YangRachana BhatawdekarLaura BisigelloV. BuatAntonello CalabròM. CastellanoNikko J. CleriMichael C. CooperDarren CrotonE. DaddiAvishai DekelD. ElbazMaximilien FrancoEric GawiserBenne W. HolwerdaAnne E. JaskotGene C. K. LeungRay A. LucasBahram MobasherViraj PandyaSandro TacchellaBenjamin J. WeinerJorge A. Zavala

Abstract

Abstract We present an investigation into the first 500 Myr of galaxy evolution from the Cosmic Evolution Early Release Science (CEERS) survey. CEERS, one of 13 JWST ERS programs, targets galaxy formation from z ∼ 0.5 to >10 using several imaging and spectroscopic modes. We make use of the first epoch of CEERS NIRCam imaging, spanning 35.5 arcmin 2 , to search for candidate galaxies at z > 9. Following a detailed data reduction process implementing several custom steps to produce high-quality reduced images, we perform multiband photometry across seven NIRCam broad- and medium-band (and six Hubble broadband) filters focusing on robust colors and accurate total fluxes. We measure photometric redshifts and devise a robust set of selection criteria to identify a sample of 26 galaxy candidates at z ∼ 9–16. These objects are compact with a median half-light radius of ∼0.5 kpc. We present an early estimate of the z ∼ 11 rest-frame ultraviolet (UV) luminosity function, finding that the number density of galaxies at M UV ∼ −20 appears to evolve very little from z ∼ 9 to 11. We also find that the abundance (surface density [arcmin −2 ]) of our candidates exceeds nearly all theoretical predictions. We explore potential implications, including that at z > 10, star formation may be dominated by top-heavy initial mass functions, which would result in an increased ratio of UV light per unit halo mass, though a complete lack of dust attenuation and/or changing star formation physics may also play a role. While spectroscopic confirmation of these sources is urgently required, our results suggest that the deeper views to come with JWST should yield prolific samples of ultrahigh-redshift galaxies with which to further explore these conclusions.

Galaxies: Formation, Evolution, PhenomenaAstronomy and Astrophysical ResearchGamma-ray bursts and supernovaePhysicsAstrophysicsGalaxyRedshiftStar formationPhotometry (optics)AstronomyGalaxy formation and evolutionReionizationHalo

Funding

  • Space Telescope Science Institute
  • Science and Technology Facilities Council
Citations
470
FWCI
83.69
field-weighted impact
References
151
Percentile
100%
vs. same field & year
Citations per year
References
Stellar population synthesis at the resolution of 2003
Monthly Notices of the Royal Astronomical Society · 2003 · 10,011 citations
DETAILED DECOMPOSITION OF GALAXY IMAGES. II. BEYOND AXISYMMETRIC MODELS
The Astronomical Journal · 2010 · 1,715 citations
Detailed Structural Decomposition of Galaxy Images
The Astronomical Journal · 2002 · 2,648 citations
Secondary standard stars for absolute spectrophotometry
The Astrophysical Journal · 1983 · 2,667 citations
The Hubble Ultra Deep Field
The Astronomical Journal · 2006 · 848 citations
CANDELS: THE COSMIC ASSEMBLY NEAR-INFRARED DEEP EXTRAGALACTIC LEGACY SURVEY
The Astrophysical Journal Supplement Series · 2011 · 2,077 citations
The relationship between infrared, optical, and ultraviolet extinction
The Astrophysical Journal · 1989 · 11,157 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.