The Astrophysical Journal (Jan 2024)

5–25 μm Galaxy Number Counts from Deep JWST Data

  • Meredith A. Stone,
  • Stacey Alberts,
  • George H. Rieke,
  • Andrew J. Bunker,
  • Jianwei Lyu,
  • Pablo G. Pérez-González,
  • Irene Shivaei,
  • Yongda Zhu

DOI
https://doi.org/10.3847/1538-4357/ad6308
Journal volume & issue
Vol. 972, no. 1
p. 62

Abstract

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Galaxy number counts probe the evolution of galaxies over cosmic time and serve as a valuable comparison point to theoretical models of galaxy formation. We present new galaxy number counts in eight photometric bands between 5 and 25 μ m from the Systematic Mid-infrared Instrument Legacy Extragalactic Survey and the JWST Advanced Deep Extragalactic Survey deep MIRI parallel, extending to unprecedented depth. By combining our new MIRI counts with existing data from Spitzer and AKARI, we achieve counts across 3–5 orders of magnitude in flux in all MIRI bands. Our counts diverge from predictions from recent semianalytical models of galaxy formation, likely due to their treatment of mid-IR aromatic features. Finally, we integrate our combined JWST−Spitzer counts at 8 and 24 μ m to measure the cosmic infrared background (CIB) light at these wavelengths; our measured CIB fluxes are consistent with those from previous mid-IR surveys but larger than predicted by models based on TeV blazar data.

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