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High resolution spectroscopy and channel-coupling treatment of the A(1)Sigma(+)-b(3)Pi complex of NaRb

机译:NaRb的A(1)Sigma(+)-b(3)Pi络合物的高分辨率光谱学和通道耦合处理

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The paper presents the study of the fully mixed A (1)Sigma(+)-b (3)Pi complex of the NaRb molecule based on high-resolution sub-Doppler spectroscopy and intensity measurements, ab initio relativistic calculations of energies, transition moments and spin-orbit interactions, as well as an inverted channel-coupling approach (ICCA) deperturbation analysis. A two-laser V-type pump-probe excitation scheme was employed to obtain A<--X transition frequencies to 16 A-state vibrational levels from v=6 to v=21 with J from 8 to 23. Additionally, relative intensities in laser-induced A-->X fluorescence spectra have been recorded, including progressions with all observable transitions to the ground state vibronic levels, the latter yielding unambiguous v assignment of the A-state levels observed. All experimental rovibronic term values and all measured intensity distributions were embedded in a direct simultaneous weighted nonlinear fitting in the framework of an elaborated ICCA allowing us to obtain deperturbed relativistic diabatic potentials of the interacting A (1)Sigma(+) and b (3)Pi states. To make this possible, ab initio structure calculations of the spin-orbit singlet-triplet coupling parameter, the spin-orbit splitting of the b (3)Pi state, the transition dipole moments, and the electronic energy differences for internuclear distance 3.0-7.0 Angstrom have been performed using second order many-body multipartitioning perturbation theory. The developed ICCA is proved to be appropriate for deperturbation analysis of strongly coupled electronic states provided that accurate nonadiabatic matrix elements are known. This allows unambiguous assignment of the vibrational levels of the b (3)Pi(0) state, which is not directly observed. (C) 2002 American Institute of Physics. [References: 47]
机译:本文基于高分辨率亚多普勒光谱和强度测量,能量,过渡矩的从头相对论计算,研究了NaRb分子的完全混合的A(1)Sigma(+)-b(3)Pi配合物。和自旋轨道相互作用,以及反向通道耦合方法(ICCA)扰动分析。采用两激光V型泵浦探针激励方案来获得从V = 6到v = 21,从J到8到23的A <-X跃迁到16个A态振动能级。记录了激光诱导的A-> X荧光光谱,包括所有可观察到的跃迁到基态电子振动能级的进展,后者产生了所观察到的A态能级的明确v赋值。所有实验电子振动项值和所有测得的强度分布都嵌入到详细的ICCA框架中的直接同时加权非线性拟合中,从而使我们能够获得相互作用的A(1)Sigma(+)和b(3)的扰动的相对论绝热势states州。为此,自旋轨道单重态-三重态耦合参数的从头算结构,b(3)Pi态的自旋轨道分裂,跃迁偶极矩以及核间距离3.0-7.0的电子能差埃斯通已经使用二阶多体多分区摄动理论进行了计算。如果已知精确的非绝热矩阵元素,那么开发的ICCA被证明适用于对强耦合电子态进行去扰动分析。这可以明确分配b(3)Pi(0)状态的振动水平,而这并不能直接观察到。 (C)2002美国物理研究所。 [参考:47]

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