paper

ALMA detection of acetone, disulfur monoxide, and carbon monoxide in the Jupiter volcanic moon Io

arXiv:2103.17018

Abstract

The extremely thin atmosphere of Jupiter's volcanic moon Io primarily consists of sulfur (S), sodium (Na), and oxygen (O) molecules that are controlled by the combination of the sublimation and volcanic outgasses. We present the first spectroscopic detection of the two rotational emission lines of acetone (CHCOCH) and a single emission line of disulfur monoxide (SO), and carbon monoxide (CO) at frequency = 346.539, 346.667, 346.543, and 345.795 GHz respectively using the archival data of high-resolution Atacama Large Millimeter/Submillimeter Array (ALMA) interferometer with band 7 observation. All molecular species are detected with 5 statistical significance. Jupiter's moon Io is the most volcanically active body in the solar system with a very thin and spatially variable atmosphere. The volcanic gas CHCOCH, SO, and CO are mainly coming from volcanic plumes. The statistical column density of CHCOCH line is N(CHCOCH) = 3.1810 cm but for the cases of SO and CO, the column densities are N(SO) = 2.6310 cm and N(CO) = 5.2710 cm respectively. The carbon monoxide gas is mainly formed by the photolysis of the volcanic gas acetone.

5 pages, 1 figure, comments are welcome

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