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February 2, 2026Astronomy and Astrophysics0 citationsOpen Access

MIRI spectrophotometry of GN-z11: Detection and nature of an optical red continuum component

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AGA. Crespo GómezLCL. ColinaPPP. G. Pérez-González

Key Points

  • This work aims to analyze the optical red continuum component of GN-z11 to understand its spectral characteristics.
  • MIRI imaging in F560W, F770W, and F1000W filters to capture spectral data.
  • Combination of new MIRI data with archival NIRSpec/Prism and NIRCam imaging.
  • Analysis of spectral energy distribution to identify contributions from stellar populations and potential AGN.
  • Significant detection in the F560W and F770W images with 14 σ significance.
  • Marginal detection in the F1000W filter with 3.2 σ significance.
  • Continuum shows a flat energy distribution, suggesting a mixed population of young and mature stars.
  • Flux excess observed at 0.66 μm (36 ± 3%) and 0.86 μm (91 ± 28%), indicating a potential hot dust contribution.

Abstract

We present new MIRI F560W, F770W, and F1000W imaging of the galaxy GN-z11 at a redshift of 10.603. We report a significant detection (14 σ ) in the F560W and F770W images, and a marginal detection (3.2 σ ) in the F1000W filter. The new MIRI observations cover the optical-red spectral range and significantly extend previous NIRCam wavelength coverage from rest-frame 0.38 μm up to 0.86 μm. In this work, we analyse the spectral energy distribution (SED) combining this new MIRI imaging data with archival NIRSpec/Prism and MRS spectroscopy, and NIRCam imaging, i.e. covering the rest-frame 0.12–0.86 μm. New constraints such as the equivalent widths of the strong optical lines (O III λ 5008, H β and H α ) and the continuum emission at rest-frame 0.48 μm, 0.66 μm, and 0.86 μm, free of emission line contributions, are presented. The continuum emission shows a flat energy distribution, in f ν , up to 0.5 μm, compatible with the presence of a mixed stellar population of young (4 ± 1 Myr) and mature (63 ± 23 Myr) stars that also account for the O III , H β , and H α emission lines. The continuum at rest-frame 0.66 μm shows a 36 ± 3% flux excess above the predicted flux for a mixed stellar population, pointing to the presence of an additional source contributing at these wavelengths. This excess increases to 91 ± 28% at rest-frame 0.86 μm, although with a large uncertainty due to the marginal detection in the F1000W filter. We consider that hot dust emission in the dusty torus around a type 2 active galactic nucleus (AGN) could be responsible for the observed excess. Alternatively, this excess could be due to hot dust emission or a photoluminiscence dust process (Extended Red Emission, ERE) under the extreme UV radiation field, as is observed in local metal-poor galaxies and in young compact starbursts. The presence of a type 1 AGN is not supported by the observed SED as the hot dust emission in luminous high- z quasi-stellar objects (QSOs) contributes at wavelengths above rest-frame 1 μm, and an additional ad hoc red source would be required to explain the observed flux excess at 0.66 and 0.86 μm. Additional deep MIRI imaging covering the rest-frame near-IR is needed to confirm the flux detection at 10 μm, and to discriminate between the different hot dust emission in the extreme starburst and AGN scenarios.

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Cite This Study

Gómez et al. (2026) studied this question.

synapsesocial.com/papers/6980fcd6c1c9540dea80e9c9https://doi.org/10.1051/0004-6361/202556814
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