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October 13, 2025Monthly Notices of the Royal Astronomical Society3 citationsOpen Access

GATOS IX: A Detailed Assessment and Treatment of Emission Line Contamination in JWST/MIRI Images of Nearby Seyfert Galaxies

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SCStephanie CampbellDRD. J. RosarioHHH. Haidar

Key Points

  • Extended mid-infrared emission persists on scales of hundreds of parsecs, even after removing line contamination.
  • Contamination levels vary between objects, with a range from 5% to 30% in the F1000W filter, indicating the need for tailored approaches.
  • Test methods estimate line contamination within 10 percentage points when using only spectroscopic data or imaging data.
  • Findings provide a useful guide for quantifying and mitigating emission line contamination in MIRI broadband imaging.

Abstract

Abstract Broadband mid-infrared (MIR) imaging with high spatial resolution is useful to study extended dust structures in the circumnuclear regions of nearby AGN. However, broadband imaging filters cannot distinguish dust continuum emission from emission lines, and so accounting for the emission line contamination becomes crucial in studying extended dust in these environments. This paper uses Cycle 1 MIR imaging from JWST/MIRI and spectroscopy from JWST/MRS for 11 local Seyfert galaxies, as part of the Galactic Activity, Torus and Outflow Survey (GATOS). Three of the objects (NGC 3081, NGC 5728, and NGC 7172) exist in both datasets, allowing direct measurement of the line emission using the spectroscopy for these objects. We find that extended MIR emission persists on scales of 100s of parsecs after the removal of contamination from emission lines. Further, the line contamination levels vary greatly between objects (from 5 % to 30 % in the F1000W filter), and across filters, so cannot be generalised across a sample and must be carefully treated for each object and band. We also test methods to estimate the line contamination when only MRS spectroscopy or MIRI imaging is available, using pre-JWST ancillary data. We find that these methods estimate the contamination within 10 percentage points. This paper serves as a useful guide for methods to quantify and mitigate for emission line contamination in MIRI broadband imaging.

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Cite This Study

Campbell et al. (2025) studied this question.

synapsesocial.com/papers/68ec51df42911f61ef8b2364https://doi.org/10.1093/mnras/staf1719
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1GATOS – XI. Excess dust heating in the narrow-line regions of nearby AGN revealed with JWST /MIRI2026 · 2 citations
  2. 2GATOS – XI. Excess Dust Heating in the Narrow-Line Regions of Nearby AGN Revealed with JWST/MIRI2026
  3. 3Dust beyond the torus: revealing the mid-infrared heart of local Seyfert ESO 428-G14 with JWST /MIRI2024 · 15 citations
  4. 4The Galaxy Activity, Torus, and Outflow Survey (GATOS)2026
  5. 5Modeling the JWST MIRI Counts, Insights Into the Source Properties and Role of Dust-Obscured AGN2025