English

Protoplanetary disk cavities with JWST-MIRI: a dichotomy in molecular emission

Earth and Planetary Astrophysics 2026-01-06 v1

Abstract

The evolution of planet-forming regions in protoplanetary disks is of fundamental importance to understanding planet formation. Disks with a central deficit in dust emission, a "cavity", have long attracted interest as potential evidence for advanced disk clearing by protoplanets and/or winds. Before JWST, infrared spectra showed that these disks typically lack the strong molecular emission observed in full disks. In this work, we combine a sample of 12 disks with millimeter cavities of a range of sizes (2\sim2-70 au) and different levels of millimeter and infrared continuum deficits. We analyze their molecular spectra as observed with MIRI on JWST, homogeneously reduced with the new JDISCS pipeline. This analysis demonstrates a stark dichotomy in molecular emission where "molecule-rich" (MR) cavities follow global trends between water, CO, and OH luminosity and accretion luminosity as in full disks, while "molecule-poor" (MP) cavities are significantly sub-luminous in all molecules except sometimes OH. Disk cavities generally show sub-luminous organic emission, higher OH/H2_2O ratios, and suggest a lower water column density. The sub-thermal excitation of CO and water vibrational lines suggests a decreased gas density in the emitting layer in all cavities, supporting model expectations for C2_2H2_2 photodissociation. We discover a bifurcation in infrared index (lower in MR cavities) suggesting that the molecular dichotomy is linked to residual μ\mum-size dust within millimeter disk cavities. Put together, these results suggest a feedback process between dust depletion, gas density decrease, and molecule dissociation. Disk cavities may have a common evolutionary sequence where MR switch into MP over time.

Keywords

Cite

@article{arxiv.2601.02344,
  title  = {Protoplanetary disk cavities with JWST-MIRI: a dichotomy in molecular emission},
  author = {Patrick Mallaney and Andrea Banzatti and Colette Salyk and Ilaria Pascucci and Paola Pinilla and Joan Najita and Klaus M. Pontoppidan and Sebastiaan Krijt and Geoffrey A. Blake and Benoit Tabone and Till Kaeufer and Ke Zhang and Feng Long and Jane Huang and Giovanni Rosotti and Karin I. Oberg and Maria Jose Colmenares and Andrew Lay and Lucas A. Cieza and L. Ilsedore Cleeves and Joe Williams and Chengyan Xie and Miguel Vioque and Mayank Narang and Nicholas P. Ballering and Minjae Kim and the JDISCS Collaboration},
  journal= {arXiv preprint arXiv:2601.02344},
  year   = {2026}
}

Comments

Accepted for publication on the Astrophysical Journal