English

Quantification of The Age Dependence of Mid-Infrared Star Formation Rate Indicators

Astrophysics of Galaxies 2025-08-13 v1

Abstract

We combine James Webb Space Telescope images of the nearby galaxy NGC 5194 in the hydrogen recombination line Pa-alpha (lambda=1.8756 micron) from the Cycle 1 program JWST-FEAST with 21 micron dust continuum images from the Cycle 2 Treasury program JWGT to quantify the difference in the calibration of mid-infrared star formation rates (SFR) between HII regions and galaxies. We use the archival HST H-alpha image to correct the Pa-alpha emission for the effects of dust attenuation. Our data confirm previous results that the dust-corrected Pa-alpha flux is tightly correlated with the 21 micron emission at the scales of HII regions. When combined with published JWST data for the HII regions of the galaxy NGC 628 and Spitzer 24 micron data for whole galaxies and for kpc-size galaxy regions, we show that the L(24)-L(Pa-alpha) correlation has exponent >1 across six decades in luminosity. In addition, the hybrid 24 micron+H-alpha SFR indicator has a scaling constant about 4.4 times higher for HII regions than for whole galaxies, also in agreement with previous results. Models of stellar populations with a range of star formation histories reveal that the observed trends can be entirely ascribed to and quantified with the contribution to the IR emission by stellar populations older than ~5-6 Myr. Based on the models' results, we provide: (1) a calibration for the infrared SFR across six orders of magnitude in L(24), from HII regions to luminous galaxies, and (2) a prescription for the scaling constant of the hybrid infrared SFR indicators as a function of the star formation timescale.

Keywords

Cite

@article{arxiv.2508.08451,
  title  = {Quantification of The Age Dependence of Mid-Infrared Star Formation Rate Indicators},
  author = {Daniela Calzetti and Robert C. Kennicutt and Angela Adamo and Karin Sandstrom and Daniel A. Dale and Bruce Elmegreen and John S. Gallagher and Benjamin Gregg and Varun Bajaj and Torsten Boker and Giacomo Bortolini and Martha Boyer and Matteo Correnti and Ilse De Looze and Bruce T. Draine and Ana Duarte-Cabral and Helena Faustino Vieira and Kathryn Grasha and L. K. Hunt and Kelsey E. Johnson and Ralf S. Klessen and Mark R. Krumholz and Thomas S. -Y. Lai and Drew Lapeer and Sean T. Linden and Matteo Messa and Goeran Ostlin and Alex Pedrini and Monica Relano and Elena Sabbi and Eva Schinnerer and Evan Skillman and Linda J. Smith and Monica Tosi and Fabian Walter and Tony D. Weinbeck},
  journal= {arXiv preprint arXiv:2508.08451},
  year   = {2025}
}

Comments

41 pages, 16 figures; accepted for publication on the Astrophysical Journal on August 8th, 2025