The sulfur plume in the Horsehead nebula: New detections of SH, SH, and CO
arXiv:2505.22117 · doi:10.3847/2041-8213/addbd3
Abstract
Sulfur is essential for life, but its abundance and distribution in the interstellar medium remain uncertain, with over 90% of sulfur undetected in cold molecular clouds. Sulfur allotropes (S) have been proposed as possible reservoirs, but the only detected interstellar molecule with a disulfide bond is SH in the Horsehead Nebula, making the estimation of sulfur chains abundances difficult. Here we present total-power ALMA images of HS, SH, SO, CO, and SH towards the Horsehead nebula. These observations, with unprecedented sensitivity (rms 1.5 mK), provide the first detections of SH and CO in this region, together with the identification of a new SH line. The comparison of the spectroscopic images of HS, SH, SO, CO and SH shows that the SH emission originates from a warm gas layer adjacent to the photodissociation front. The emission peak of SH is offset from those of reactive ions such as SH, CO, and SO, suggesting that gas-phase reactions involving SH and HS are not the dominant formation pathway of SH. Instead, we propose that SH is desorbed from irradiated grain surfaces by non-thermal processes. The SH detection indicates that sulfur is not significantly depleted at the UV-irradiated edge of the molecular cloud, arguing against a major refractory sulfur reservoir in the interior of molecular clouds.
12 pages, 4 figures, accepted for publication in Astrophysical Journal Letters
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