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First Detection of Interstellar S2H

机译:星际S2H的首次检测

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摘要

We present the first detection of gas phase S2H in the Horsehead, a moderately UV-irradiated nebula. This confirms the presence of doubly sulfuretted species in the interstellar medium and opens a new challenge for sulfur chemistry. The observed S2H abundance is ~5×10−11, only a factor 4-6 lower than that of the widespread H2S molecule. H2S and S2H are efficiently formed on the UV-irradiated icy grain mantles. We performed ice irradiation experiments to determine the H2S and S2H photodesorption yields. The obtained values are ~1.2×10−3 and <1×10−5 molecules per incident photon for H2S and S2H, respectively. Our upper limit to the S2H photodesorption yield suggests that photo-desorption is not a competitive mechanism to release the S2H molecules to the gas phase. Other desorption mechanisms such as chemical desorption, cosmic-ray desorption and grain shattering can increase the gaseous S2H abundance to some extent. Alternatively, S2H can be formed via gas phase reactions involving gaseous H2S and the abundant ions S+ and SH+. The detection of S2H in this nebula could be therefore the result of the coexistence of an active grain surface chemistry and gaseous photo-chemistry.
机译:我们提出了在Horsehead(中度紫外线辐射的星云)中首次检测到气相S2H。这证实了星际介质中存在双硫键化物种,并为硫化学带来了新的挑战。观察到的S2H丰度为〜5×10 −11 ,仅比普遍存在的H2S分子低4-6倍。 H2S和S2H有效地形成在紫外线照射的冰粒套上。我们进行了冰照射实验,以确定H2S和S2H的光脱附率。对于H2S和S2H,每个入射光子获得的值分别为〜1.2×10 -3 和<1×10 -5 分子。我们对S2H光解吸产率的上限表明,光解吸不是将S2H分子释放到气相的竞争机制。其他解吸机制(例如化学解吸,宇宙射线解吸和颗粒破碎)可以在某种程度上增加气态S2H的丰度。或者,可以通过涉及气态H2S和丰富离子S + 和SH + 的气相反应形成S2H。因此,该星云中S2H的检测可能是活性颗粒表面化学物质和气态光化学物质共存的结果。

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