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Optical Spectroscopic Determination of the Zero-Field Splitting in Vibronic Levels of the Triplet State of Nitrite

机译:分光光度法测定亚硝酸根三重态的电子能级零场分裂

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摘要

We have used conventional high resolution optical spectroscopic methods to determine the principal values of the fine structure tensor for the lowest triplet state (3B1 at 18 959 cm^−1) of NO in Na NO2 single crystals. From the intensities in the Zeeman spectrum we findudud[dformula D - E = 0.86 [plus-minus] 0.04cm[sup -1],]udud[dformula D + E = 0.40 [plus-minus] 0.04cm[sup -1],]ududwhere the z axis is taken as the twofold axis and E = (Z − X) / 2. From the measurement of line positions in the high-field Zeeman spectrum we find D − E = 0.84 ± 0.05cm−1,D + E = 0.41 ± 0.05cm−1. The values of D and E calculated for one-center spin–spin interaction are D − E = 0.42cm^−1 and D + E = 0.24cm^−1. The calculated ordering of the spin states is the same as that observed, but we suggest that there is significant second-order spin–orbit energy associated with the real splittings. Roughly the same splittings are seen for different vibronic levels of 3B1 associated with nu2[prime]
机译:我们已经使用常规的高分辨率光学光谱法来确定Na NO2单晶中NO的最低三重态(在18959 cm ^ -1处的3B1)的精细结构张量的主值。从塞曼光谱中的强度,我们发现 ud ud [公式D-E = 0.86 [正负] 0.04cm [sup -1],] ud ud [公式D + E = 0.40 [正负] 0.04cm [sup -1],] ud ud,其中z轴为双倍轴,E =(Z-X)/2。根据高场塞曼光谱中线位置的测量,我们得出D- E = 0.84±0.05cm-1,D + E = 0.41±0.05cm-1。为一中心自旋-自旋相互作用计算的D和E值为D-E = 0.42cm ^ -1和D + E = 0.24cm ^ -1。自旋态的计算顺序与观察到的相同,但是我们建议与真实分裂相关的二阶自旋轨道能量很大。对于与nu2 [prime]相关的3B1的不同振动水平,可以看到大致相同的分裂

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