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The millimeter wave spectrum of methyl cyanate: a laboratory study and astronomical search in space

机译:氰酸甲酯的毫米波光谱:在太空中的实验室研究和天文搜索

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Aims. The recent discovery of methyl isocyanate (CH3NCO) in Sgr B2(N) and Orion KL makes methyl cyanate (CH3OCN) a potential molecule in the interstellar medium. The aim of this work is to fulfill the first requirement for its unequivocal identification in space, i.e. the availability of transition frequencies with high accuracy. Methods. The room-temperature rotational spectrum of methyl cyanate was recorded in the millimeter wave domain from 130 to 350 GHz. All rotational transitions revealed A-E splitting owing to methyl internal rotation and were globally analyzed using the ERHAM program. Results. The data set for the ground torsional state of methyl cyanate exceeds 700 transitions within J′′ = 10?35 and K"a= 0?13 and newly derived spectroscopic constants reproduce the spectrum close to the experimental uncertainty. Spectral features of methyl cyanate were then searched for in Orion KL, Sgr B2(N), B1-b, and TMC-1 molecular clouds. Upper limits to the column density of methyl cyanate are provided.
机译:目的最近在Sgr B2(N)和Orion KL中发现异氰酸甲酯(CH3NCO),使氰酸甲酯(CH3OCN)成为星际介质中的潜在分子。这项工作的目的是满足对其在空间中的明确识别的第一个要求,即具有高精度的转换频率。方法。在毫米波域中从130至350 GHz记录了氰酸甲酯的室温旋转光谱。所有的旋转转变均由于甲基内部旋转而显示出A-E分裂,并使用ERHAM程序进行了全局分析。结果。氰酸甲酯的基态扭转态的数据集在J''= 10?35和K“ a = 0?13内超过700个跃迁,并且新推导的光谱常数重现了接近实验不确定性的光谱。然后在Orion KL,Sgr B2(N),B1-b和TMC-1分子云中进行搜索,并提供了氰酸甲酯色谱柱密度的上限。

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