JWST Observations of Starbursts: Dust Processing in the M82 Superwind
Serena A. Cronin, Alberto D. Bolatto, Helena M. Richie, Grant P. Donnelly, Rebecca C. Levy, Karl D. Gordon, Elizabeth Tarantino, Martha L. Boyer, Lee Armus, Patricia A. Arens, Leindert A. Boogaard, Daniel A. Dale, Keaton Donaghue, Bruce T. Draine, Sara E. Duval, Kimberly Emig

TL;DR
This study uses JWST imaging to analyze PAH emission in the M82 superwind, revealing insights into dust processing, PAH size, ionization, and abundance distribution up to 5 kpc from the starburst.
Contribution
First high-resolution JWST imaging of PAHs in a starburst superwind, showing their distribution, size, ionization, and abundance profiles.
Findings
PAH surface brightness declines with inverse square of distance from midplane.
PAH ratios indicate larger PAHs and more neutral states with distance.
PAH abundance remains constant at ~1% out to 5 kpc, suggesting shielding and cloud interactions.
Abstract
We present JWST MIRI and NIRCam imaging of the inner ~5 kpc of the M82 superwind at 0.05-0.375'' (~0.9-6.5 pc) resolution. Targeted filters probe emission from polycyclic aromatic hydrocarbons (PAHs; F335M, F360M, F770W, F1130W) and continuum (F250M, F360M). The images reveal a network of cool wind filaments traced by PAHs. PAH surface brightness declines with the inverse square of distance to the midplane, suggesting that the incident radiation field from the starburst drives the observed PAH intensity out to 2.5 kpc. The 3.3/11.3 and 3.3/7.7 band ratios show uniformity with distance from the starburst, though comparisons with mid-IR dust emission models indicate a modest shift toward larger PAHs. Outside the disk, 11.3/7.7 increases moderately, reflecting that PAHs become more neutral with distance from the starburst as they are exposed to a declining radiation field and ionization…
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