Detection of propadiene (CH$_2$CCH$_2$), propene (C$_3$H$_6$) and non-detection of propane (C$_3$H$_8$) in Jupiter's northern polar stratosphere
James A. Sinclair, Thomas K. Greathouse, Rohini S. Giles, Keeyoon Sung, Conor A. Nixon, Nicholas A. Lombardo, Vincent Hue, Julianne I. Moses, Leigh N. Fletcher, Patrick G. J. Irwin, and Glenn S. Orton

TL;DR
This study reports the first detection of propadiene and propene in Jupiter's northern polar stratosphere, revealing significant enrichment likely due to auroral-related processes, and sets upper limits on propane presence.
Contribution
First observational detection of propadiene and propene in Jupiter's polar stratosphere, highlighting auroral influence on their abundance and suggesting the need for ion-neutral chemistry models.
Findings
Propadiene detected at >12-sigma inside Jupiter's NAR.
Propene detected at >17-sigma inside Jupiter's NAR.
Propane not detected, with 3-sigma upper limit of 10 ppbv.
Abstract
We report the first detection of stratospheric propadiene (CHCCH) and propene (CH) at Jupiter's mid-to-high northern latitudes using IRTF-TEXES measurements recorded on March 5-6, 2025. Using radiative transfer software to quantitatively test for the presence of propadiene and propene, we report a 12- detection of propadiene and a 17- detection of propene inside Jupiter's northern auroral region (henceforth 'NAR'), where the species are most concentrated. For example, at 62N inside Jupiter's NAR, we derive a 1-mbar propadiene abundance of 2.0 0.2 ppbv, which is 40 3 higher than abundances predicted by the Moses & Poppe (2017) photochemical model (henceforth 'MP17'), and significantly higher than the 1.2-ppbv upper limit abundance derived at 42N (the lowest latitude sampled by the observations). Similarly, we derive a…
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