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HIGH PRECISION ROVIBRATIONAL SPECTROSCOPY OF OH+

机译:OH +的高精度旋转光谱

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The molecular ion OH+ has long been known to be an important component of the interstellar medium. Its relative abundance can be used to indirectly measure cosmic ray ionization rates of hydrogen, and it is the first intermediate in the interstellar formation of water. To date, only a limited number of pure rotational transitions have been observed in the laboratory making it necessary to indirectly calculate rotational levels from high-precision rovibrational spectroscopy. We have remeasured 30 transitions in the fundamental band with MHz-level precision, in order to enable the prediction of a THz spectrum of OH+. The ions were produced in a water cooled discharge of O2, H2, and He, and the rovibrational transitions were measured with the technique Noise Immune Cavity Enhanced Optical Heterodyne Velocity Modulation Spectroscopy. These values have been included in a global fit of field free data to a 3Σ? linear molecule effective Hamiltonian to determine improved spectroscopic parameters which were used to predict the pure rotational transition frequencies.
机译:人们早就知道分子离子OH +是星际介质的重要组成部分。它的相对丰度可用于间接测量氢的宇宙射线电离速率,并且它是星际水形成中的第一个中间体。迄今为止,在实验室中仅观察到有限数量的纯旋转跃迁,因此有必要通过高精度旋转振动光谱法间接计算旋转水平。为了能够预测OH +的THz频谱,我们以MHz级的精度重新测量了基带中的30个跃迁。离子是在O2,H2和He的水冷放电中产生的,并且通过噪声免疫腔增强型光学外差速度调制光谱技术测量了旋转跃迁。这些值已包含在无场数据与3Σ?的全局拟合中。线性分子有效的哈密顿量,以确定改善的光谱参数,这些参数用于预测纯旋转跃迁频率。

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