CEERS Key Paper I: An Early Look into the First 500 Myr of Galaxy Formation with JWST
Steven L. Finkelstein, Micaela B. Bagley, Henry C. Ferguson, Stephen, M. Wilkins, Jeyhan S. Kartaltepe, Casey Papovich, L. Y. Aaron Yung, Pablo, Arrabal Haro, Peter Behroozi, Mark Dickinson, Dale D. Kocevski, Anton M., Koekemoer, Rebecca L. Larson, Aurelien Le Bail

TL;DR
This paper reports early JWST observations of the first 500 million years of galaxy formation, identifying 26 high-redshift galaxy candidates and analyzing their properties to inform models of early universe evolution.
Contribution
It provides the first robust sample of z>9 galaxy candidates from JWST data and compares their abundance with theoretical predictions, suggesting possible new insights into early star formation.
Findings
Number density of galaxies at z~9-11 evolves little from previous estimates.
Candidate galaxies are compact with median half-light radius ~0.5 kpc.
Observed abundance exceeds most theoretical models predictions.
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 z>10 using several imaging and spectroscopic modes. We make use of the first epoch of CEERS NIRCam imaging, spanning 35.5 sq. arcmin, 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 multi-band 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…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Galaxies: Formation, Evolution, Phenomena · Adaptive optics and wavefront sensing
