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November 21, 2022Monthly Notices of the Royal Astronomical Society227 citationsOpen Access

Revealing galaxy candidates out to z ∼ 16 with JWST observations of the lensing cluster SMACS0723

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HAHakim AtekMSMarko ShuntovLFLukas J. Furtak

Key Points

  • To discover and characterize early galaxy candidates out to extreme redshifts using deep near-infrared imaging from the James Webb Space Telescope.
  • Conducted a systematic photometric analysis combining seven NIRCam and NIRISS filters targeting the lensing cluster SMACS0723.
  • Modeled spectral energy distributions with EAZY and BEAGLE to estimate photometric redshifts up to z ~ 21.
  • Identified two galaxy candidates at z ~ 16 (approximately 250 million years after the Big Bang), two at z ~ 12, and six at z ~ 9–11.
  • Characterized the highest-redshift candidates as having blue UV-continuum slopes (-3 < β < -2.4), young ages (10–100 Myr), and stellar masses of log(M⋆/M⊙) ~ 8.8.

Abstract

ABSTRACT One of the main goals of the JWST is to study the first galaxies in the Universe. We present a systematic photometric analysis of very distant galaxies in the first JWST deep field towards the massive lensing cluster SMACS0723. As a result, we report the discovery of two galaxy candidates at z ∼ 16, only 250 million years after the big bang. We also identify two candidates at z ∼ 12 and six candidates at z ∼ 9−11. Our search extended out to z ≲ 21 by combining colour information across seven near-infrared camera and near-infrared imager and slitless spectrograph filters. By modelling the Spectral Energy Distributions (SEDs) with EAZY and BEAGLE, we test the robustness of the photometric redshift estimates. While their intrinsic (unlensed) luminosity is typical of the characteristic luminosity L* at z 10, our high-redshift galaxies typically show small sizes and their morphologies are consistent with disks in some cases. The highest-redshift candidates have extremely blue ultraviolet-continuum slopes −3 β −2.4, young ages ∼10−100 Myr, and stellar masses around log (M⋆/M⊙) = 8.8 inferred from their spectral energy distribution modelling, which indicate a rapid build-up of their stellar mass. Our search clearly demonstrates the capabilities of JWST to uncover robust photometric candidates up to very high redshifts and peer into the formation epoch of the first galaxies.

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Cite This Study

Atek et al. (2022) studied this question.

synapsesocial.com/papers/6a0fafb02badbc352afe8bc3https://doi.org/10.1093/mnras/stac3144
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