首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >High-Resolution Laser Spectroscopic Survey of the H-3 Sigma(-)(u)-X-3 Sigma(-)(g) Electronic Transition of Si-2
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High-Resolution Laser Spectroscopic Survey of the H-3 Sigma(-)(u)-X-3 Sigma(-)(g) Electronic Transition of Si-2

机译:H-3 Sigma( - )(u)-x-3 sigma( - )(g)电子转换的高分辨率激光光谱测量综述Si-2的电子转换

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摘要

Rotationally resolved spectra of the H-3 Sigma(-)(u)-X-3 Sigma(-)(g) electronic transition bands of Si-2 have been experimentally studied using laser-induced fluorescence in the 380-520 nm range. Si-2 molecules are produced in a supersonically expanding planar plasma by discharging a silane/argon gas mixture. In total, 44 bands belonging to the H-3 Sigma(-)(u)-X-3 Sigma(-)(g) electronic transition system of the most abundant isotopologue (28)Si(2 )are experimentally recorded. With a spectral resolution of similar to 0.04 cm(-1), the triplet spin-splitting structures in individual rotational transition lines are fully resolved. Detailed analyses on the high-resolution spectra have yielded an accurate determination of spectroscopic constants for both X-3 Sigma(- )(g)and H-3 Sigma(-)(u) states. The spin-spin interaction constants for the two triplet states are found to be comparable (lambda approximate to 1.5 cm(-1)), which may originate from the 3p atomic orbital interaction in the triplet Si, molecule. The measured isotopologue spectra of Si-29 Si-28 and (SiSi)-Si-30-Si-28 indicate that the H-3 Sigma(-)(u)-X-3 Sigma(-)(g) transition system of S-29 S-28 and (SS)-S-30-S-28 can be reasonably reproduced by the isotope mass-scaling rule. Spectroscopic parameters, including the Franck-Condon factors, the Einstein coefficients, and the oscillator strengths, are also determined from the experimental results and the Rydberg-Klein-Rees (RKR) calculations. The agreement between the experimentally measured and calculated dispersed fluorescence spectra indicates that the RKR calculations with the molecular constants determined in this work can accurately reproduce the diatomic potentials of both states. These molecular data provide a benchmark in high-level theoretical studies on Si-2 and likely other small silicon clusters.
机译:通过在380-520nm范围内使用激光诱导的荧光在实验研究Si-2的H-3 sigma( - - )( - )( - )( - )( - )( - )( - )( - )(g)电子转换带的旋转分辨的Si-2的电子转换带。通过排出硅烷/氩气混合物,在超速膨胀的平面等离子体中产生Si-2分子。总共44条带属于H-3 Sigma( - )(U)-X-3 Sigma( - )(g)电子转换系统的最丰富的同工学(28)Si(2)的电子转换系统是通过实验记录的。利用类似于0.04cm(-1)的光谱分辨率,各个旋转过渡线中的三联自旋分裂结构完全分辨。高分辨率光谱的详细分析产生了X-3 Sigma( - )(g)和H-3 sigma( - )( - )态的光谱常数的精确测定。发现两种三重态态的旋转旋转相互作用常数是可比较的(λ近似为1.5cm(-1)),其可以源自三重态Si,分子中的3P原子轨道相互作用。 Si-29 Si-28和(SISI)-SI-30-Si-28的测量同位素光谱表明H-3 Sigma( - )( - )(U)-X-3 Sigma( - )(G)过渡系统S-29 S-28和(SS)-30-S-28可以通过同位素质量缩放规则合理地再现。在实验结果和rydberg-klein-REES(RKR)计算中也确定光谱参数,包括Franck-Condon因子,Einstein系数和振荡器强度。实验测量和计算的分散荧光光谱之间的协议表明,具有在该工作中确定的分子常数的RKR计算可以精确地再现两种状态的硅藻势。这些分子数据在Si-2和其他小型硅簇上提供了高级理论研究的基准。

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