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The microwave spectrum of cobalt monoxide:Hyperfine interactions in the X~4 #DELTA# state

机译:X〜4#DELTA#状态下一氧化钴:超精细相互作用的微波光谱

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The rotational spectrum of CoO in the “A ground state was observed using a source-modulated submillimeter-wave spectrometer. A direct current sputtering method using cobalt powder placed in the hollow cathode electrode was used to generate the CoO radical in an atmosphere of oxygen and helium. In total 84 spectral lines were precisely measured in the frequency region of 255—465 GHz for eight rotational transitions of the two lowest spin substates. Each rotational transition consists of eight components due to the 59Co (I~ 7/2) hyperfine interaction. A least squares analysis of the measured frequencies gave a new set of molecular parameters: rotational constant, hyperfine coupling constants, a, bF, c, and eQq, centrifugal distortion corrections to rotation and spin—orbit interaction, and the less well known higher-order spin—orbit distortion term to the Fermi contact interaction, b5. A comparison of the determined molecular hyperfine coupling constants was made with those of atomic/ionic Co in order to assess the inherent characteristics of the molecular orbitals around the Co nucleus.
机译:使用源调制的亚毫米波光谱仪观察了“基态”下CoO的旋转光谱。使用在空心阴极电极中放置钴粉的直流溅射方法,在氧气和氦气气氛下产生CoO自由基。在两个最低自旋子态的八个旋转跃迁中,总共在255-465 GHz的频率范围内精确测量了84条谱线。由于59Co(I〜7/2)超精细相互作用,每个旋转跃迁均由八个分量组成。对测得的频率进行的最小二乘分析给出了一组新的分子参数:旋转常数,超精细耦合常数,a,bF,c和eQq,对旋转和自旋-轨道相互作用的离心畸变校正,以及鲜为人知的更高的费米接触相互作用的阶自旋-轨道畸变项b5。为了确定Co核周围分子轨道的固有特性,将确定的分子超精细偶联常数与原子/离子Co的常数进行了比较。

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