JWST/NIRSpec Detects Warm CO Emission in the Terrestrial-Planet Zone of HD 131488
arXiv:2512.11972 · doi:10.3847/1538-4357/ae2797
Abstract
We have obtained a high-resolution, JWST NIRSpec -- m spectrum of the debris disk around HD 131488. We discover CO fundamental emission indicating the presence of warm fluorescent gas within AU of the star. The large discrepancy in CO's vibrational and rotational temperature indicates that CO is out of thermal equilibrium and is excited with UV fluorescence. Our UV fluorescence model gives a best fit of K with an effective temperature of , , and K for the warm CO gas kinetic temperature within , , and AU to the star and a gas vibrational temperature of K. The newly discovered warm CO gas population likely resides between sub-AU scales and AU, interior to the cold CO reservoir detected beyond AU with HST STIS and ALMA. The discovery of warm, fluorescent gas in a debris disk is the first such detection ever made. The detection of warm CO raises the possibility of unseen molecules (HO, H, etc) as collisional partners to excite the warm gas. We estimated a lower mass limit for CO of , which is of the cold CO mass detected with ALMA and HST. We demonstrate that UV fluorescence emerges as a promising avenue for detecting tenuous gas at Earth-mass level in debris disks with JWST.
30 Pages, 15 Figures, 6 Tables; Accepted to ApJ; Data Behind Figure 2 Available on the Journal Publisher Site