The tight correlation of PAH and CO emission from z~0-4
arXiv:2409.05710 · doi:10.1051/0004-6361/202451826
Abstract
Aim: The cold molecular gas mass is one of the crucial, yet challenging parameters in galaxy evolution studies. Here, we introduce a new calibration for estimating molecular gas masses using mid-infrared (MIR) photometry. This topic is timely, as JWST now allows us to detect the MIR emission of typical main-sequence galaxies across a wide range of masses and star formation rates with modest time investments. This Letter highlights the strong synergy between ALMA and JWST for studies of dust and gas at cosmic noon. Methods: We combine a sample of 14 main sequence galaxies at z=1-3 with robust CO detections and multi-band MIR photometry, along with a literature sample at z=0-4 with CO and PAH spectroscopy, to study the relationship between PAH, CO(1-0), and total IR luminosities. PAH luminosities are derived from modeling rest-frame UV to sub-mm data. The new z=1-3 sample extends previous high-z studies to about an order-of-magnitude lower PAH and CO luminosities, into the regime of local starbursts for the first time. Results: The PAH-to-CO luminosity ratio remains constant across a wide range of luminosities, for various galaxy types, and throughout the explored redshift range. In contrast, the PAH-to-IR and CO-to-IR luminosity ratios deviate from a constant value at high L(IR). The intrinsic scatter in the L(PAH)-L'(CO) relation is 0.21 dex, with a median of 1.40, and a power-law slope of . Both the PAH-IR and CO-IR relations are sub-linear. Given the tight and uniform PAH-CO relation over ~3 orders of magnitude, we provide a recipe to estimate the cold molecular gas mass of galaxies from PAH luminosities, with a PAH-to-molecular gas conversion factor of . This method opens a new window to explore the gas content of galaxies beyond the local Universe using multi-wavelength JWST/MIRI imaging.
7 pages, 3 figures, 2 tables. Accepted for publication in A&A Letters
References in corpus (26)
- Theory of Star Formation
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Stellar Population Inference with Prospector
- The Chandra Deep Field-South Survey: 7 Ms Source Catalogs
- xCOLD GASS: the complete IRAM-30m legacy survey of molecular gas for galaxy evolution studies
- Mid-Infrared Spectral Diagnosis of Submillimeter Galaxies
- The Constant Average Relationship between Dust-obscured Star Formation and Stellar Mass from to
- PAH Emission from Ultraluminous Infrared Galaxies
- Revisiting the Integrated Star Formation Law. II. Starbursts and the Combined Global Schmidt Law
- The nature of faint Spitzer-selected dust-obscured galaxies
- Mid-Infrared Properties of Luminous Infrared Galaxies II: Probing the Dust and Gas Physics of the GOALS Sample
- Dust, CO and [CI]: Cross-calibration of molecular gas mass tracers in metal-rich galaxies across cosmic time
- A high angular resolution view of the PAH emission in Seyfert galaxies using JWST/MRS data
- VLA-ALMA Spectroscopic Survey in the Hubble Ultra Deep Field (VLASPECS): Total Cold Gas Masses and CO Line Ratios for z=2-3 "Main Sequence" Galaxies
- Strong PAH Emission from z~2 ULIRGs
- PHANGS-JWST First Results: Mid-infrared emission traces both gas column density and heating at 100 pc scales
- The MOSDEF Survey: Metallicity Dependence of the PAH Emission at High Redshift and Implications for 24 micron-inferred IR Luminosities and Star Formation Rates at z~2
- Untangling the Nature of Spatial Variations of Cold Dust Properties in Star Forming Galaxies
- A new census of dust and polycyclic aromatic hydrocarbons at z=0.7-2 with JWST MIRI
- Star Formation and Molecular Gas Diagnostics with Mid- and Far-Infrared Emission
- PHANGS-JWST First Results: A Global and Moderately Resolved View of Mid-Infrared and CO Line Emission from Galaxies at the Start of the JWST Era
- CEERS: Spatially Resolved UV and mid-IR Star Formation in Galaxies at 0.2 < z < 2.5: The Picture from the Hubble and James Webb Space Telescopes
- Evidence that Shocks Destroy Small PAH Molecules in Low-luminosity Active Galactic Nuclei
- CEERS: MIRI deciphers the spatial distribution of dust-obscured star formation in galaxies at
- The correlation between WISE 12 m emission and molecular gas tracers on sub-kpc scales in nearby star-forming galaxies
- Estimating Molecular Gas Content in Galaxies from PAH Emission