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The infrared spectrum of CN in its ground electronic state

机译:CN在其基态电子状态下的红外光谱

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C-12(14) N vibration-rotation bands for the sequences (1-0) through (9-8) were observed in the spectral region 1800-2200 cm(-1) using a Bruker 120 HR Fourier transform spectrometer at an unapodized resolution of 0.027 cm(-1). Of the 362 lines observed, the wavenumbers of 237 lines were least-squares fitted using the Dunham expansion coefficients with a root-mean-square deviation of 0.00093 cm(-1). Together with most accurate data from the literature, the data were also fitted in the framework of the reduced potential curve (RPC) method. The global potential energy function resulting from this fit provides a fairly quantitative description of the experimental data, at least up to 30000 cm(-1). In addition to global fitting, the RPC approach was also used for fully quantitative fitting of the data pertaining to the lowest three vibrational states. The effective potential energy curves obtained in this way allow for very accurate predictions of highly excited rotational states.
机译:使用Bruker 120 HR傅立叶变换光谱仪在未切趾的情况下,在光谱区1800-2200 cm(-1)中观察到了序列(1-0)至(9-8)的C-12(14)N个振动旋转带。分辨率为0.027 cm(-1)。在观察到的362条线中,有237条线的波数是使用Dunham膨胀系数进行最小二乘拟合的,均方根偏差为0.00093 cm(-1)。连同来自文献的最准确的数据,这些数据也被拟合在降低电位曲线(RPC)方法的框架中。由此拟合产生的全局势能函数提供了对实验数据的相当定量的描述,至少不超过30000 cm(-1)。除了全局拟合外,RPC方法还用于对与最低三个振动状态有关的数据进行完全定量拟合。通过这种方式获得的有效势能曲线可以非常准确地预测出高度激发的旋转状态。

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