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Relationships between PAHs, Small Dust Grains, H₂, and HI in Local Group Dwarf Galaxies NGC 6822 and WLM Using JWST, ALMA, and the VLA

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arxiv 2504.08069 v1 pith:2KBZYZ5B submitted 2025-04-10 astro-ph.GA

Relationships between PAHs, Small Dust Grains, H₂, and HI in Local Group Dwarf Galaxies NGC 6822 and WLM Using JWST, ALMA, and the VLA

classification astro-ph.GA
keywords galaxiesmetallicitydustdwarfsemissionf2100wf770wresolution
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present 0.7-3.3 pc resolution mid-infrared (MIR) JWST images at 7.7 $\mu$m (F770W) and 21 $\mu$m (F2100W) covering the main star-forming regions of two of the closest star-forming low-metallicity dwarf galaxies, NGC6822 and Wolf-Lundmark-Melotte (WLM). The images of NGC6822 reveal filaments, edge-brightened bubbles, diffuse emission, and a plethora of point sources. By contrast, most of the MIR emission in WLM is point-like, with a small amount of extended emission. Compared to solar metallicity galaxies, the ratio of 7.7 $\mu$m intensity ($I_\nu^{F770W}$), tracing polycyclic aromatic hydrocarbons (PAHs), to 21 $\mu$m intensity ($I_\nu^{F2100W}$), tracing small, warm dust grain emission, is suppressed in these low-metallicity dwarfs. Using ALMA CO(2-1) observations, we find that detected CO intensity versus $I_\nu^{F770W}$ at ~2 pc resolution in dwarfs follows a similar relationship to that at solar metallicity and lower resolution, while the CO versus $I_\nu^{F2100W}$ relationship in dwarfs lies significantly below that derived from solar metallicity galaxies at lower resolution, suggesting more pronounced destruction of CO molecules at low metallicity. Finally, adding in Local Group L-Band Survey VLA 21 cm HI observations, we find that $I_\nu^{F2100W}$ and $I_\nu^{F770W}$ vs. total gas ratios are suppressed in NGC6822 and WLM compared to solar metallicity galaxies. In agreement with dust models, the level of suppression appears to be at least partly accounted for by the reduced galaxy-averaged dust-to-gas and PAH-to-dust mass ratios in the dwarfs. Remaining differences are likely due to spatial variations in dust model parameters, which should be an exciting direction for future work in local dwarf galaxies.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Resolving Emission from Small Dust Grains in the Blue Compact Dwarf II Zw 40 with JWST

    astro-ph.GA 2025-09 conditional novelty 6.0

    In the low-metallicity dwarf II Zw 40, JWST resolves 3.3 um PAH emission, finds it concentrated at the northern star cluster, and shows the 3.3/11.3 PAH ratio correlates with radiation hardness.

  2. A steep mass transition for bar-driven ISM structuring revealed by PHANGS-JWST

    astro-ph.GA 2026-07 accept novelty 5.5

    Bar-driven structuring of PAH-traced cold ISM undergoes a steep transition at stellar mass 10^10 Msun, with central reservoirs and bar deserts ubiquitous only above that threshold.