The resolved star formation law in NGC 7469 from JWST, ALMA and VLA
MariaVittoria Zanchettin, Marcella Massardi, Francesco Salvestrini,, Manuela Bischetti, Chiara Feruglio, Fabrizio Fiore, Andrea Lapi

TL;DR
This study combines JWST, ALMA, and VLA observations to analyze star formation in NGC 7469, revealing detailed correlations between star formation, molecular gas, and PAH emission, and comparing its star formation law to other galaxy types.
Contribution
First detailed multi-wavelength analysis of star formation in NGC 7469 at high spatial resolution, linking PAH emission with star formation and molecular gas.
Findings
PAH emission correlates more strongly with star formation than with CO.
Star formation law in NGC 7469 is intermediate between starburst and active galactic nuclei.
Morphologies traced by JWST, ALMA, and VLA are consistent and highlight the starburst ring.
Abstract
We investigate the star formation process within the central 3.3 kpc region of the nearby luminous infrared Seyfert NGC 7469, probing scales ranging from 88 to 330 pc. We combine JWST/MIRI imaging with the F770W filter, with CO(2-1) and the underlying 1.3 mm dust continuum data from ALMA, along with VLA radio continuum observations at 22 GHz. NGC 7469 hosts a starburst ring which dominates the overall star formation activity. We estimate a global star formation rate SFR from the radio at 22 GHz, and a cold molecular gas mass M(H2) 6.4 from the CO(2-1) emission. We find that the 1.3 mm map shows a morphology remarkably similar to those traced by the 22 GHz and the 7.7 polycyclic aromatic hydrocarbon (PAH) emission observed with JWST. The three tracers reproduce the morphology of the starburst ring with…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Stellar, planetary, and galactic studies · Gamma-ray bursts and supernovae
