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Observation of double-well potential of NaH C (1)Sigma(+) state: Deriving the dissociation energy of its ground state

机译:观察NaH C(1)Σ(+)状态的双倍潜力:导出其地面状态的解离能

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Vibrational levels (v = 6-42) of the NaH C (1)Sigma(+) state including the inner and outer wells and the near-dissociation region were observed by pulsed optical-optical double resonance fluorescence depletion spectroscopy. The absolute vibrational quantum number is identified by comparing the vibrational energy difference of this experiment with the ab initio calculations. The outer well with v up to 34 is analyzed using the Dunham expansion and a Rydberg-Klein-Rees (RKR) potential energy curve is constructed. A hybrid double-well potential combined with the RKR potential, the ab initio calculation, and a long-range potential is able to describe the whole NaH C (1)Sigma(+) state including the higher vibrational levels (v = 35-42). The dissociation energy of the NaH C (1)Sigma(+) state is determined to be D-e(C) = 6595.10 +/- 5 cm(-1) and then the dissociation energy of the NaH ground state D-e(X) = 15 807.87 +/- 5 cm(-1) can be derived. Published by AIP Publishing.
机译:通过脉冲光学 - 光学双共振荧光耗竭光谱观察包括内部和外部孔的NAH C(1)Σ(+)状态的振动水平(V = 6-42)和近离解区域。 通过将该实验的振动能量差与AB Initio计算进行比较来识别绝对振动量子数。 使用Dunham膨胀和rydberg-klein-Rees(RKR)潜在能量曲线进行分析与V最多34的外部孔。 混合双井电位与RKR电位,AB Initio计算和远程电位能够描述包括较高振动水平的整个NaH C(1)Σ(+)状态(V = 35-42 )。 NaH C(1)Sigma(+)状态的解离能定为de(c)= 6595.10 +/- 5cm(-1),然后是NaH地态De(x)= 15的解离能 可以推导出807.87 +/- 5 cm(-1)。 通过AIP发布发布。

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