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SrF 的 C(2)Pi-A(2)Pi 和 D(2)Sigma(+)-A(2)Pi 跃迁的光-光双共振光谱。

Optical-optical double resonance spectroscopy of the C(2)Pi-A(2)Pi and D(2)Sigma(+)-A(2)Pi transitions of SrF.

机构信息

Department of Chemistry, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.

出版信息

J Phys Chem A. 2009 Nov 26;113(47):13383-9. doi: 10.1021/jp9020855.

Abstract

Optical-optical double resonance spectroscopy has been used to record rotationally resolved spectra of the C(2)Pi-A(2)Pi and D(2)Sigma(+)-A(2)Pi transitions of SrF. In the investigation, the spectrum of a previously unobserved (2)Sigma(+)-A(2)Pi transition was recorded. The new (2)Sigma(+) state was found to lie lower in energy than the previously labeled D(2)Sigma(+) (v = 0) state by an amount equal to the vibrational spacing of the D(2)Sigma(+) state. Therefore, the new (2)Sigma(+) state was assigned as the v = 0 level of the D(2)Sigma(+) state and the previous labeling of the vibrational quantum numbers of the D(2)Sigma(+) state should be increased by 1. Spectroscopic parameters were determined for the C(2)Pi, D(2)Sigma(+) (v = 0), and D(2)Sigma(+) (v = 1) states. The D(2)Sigma(+) (v = 0) state was found to be perturbed, most likely by the spin-orbit components of the C(2)Pi (v =1) state. The spin-orbit constant of the C(2)Pi state was found to decrease significantly relative to the A(2)Pi state, similar to CaF and SrOH. Finally, the C(2)Pi and D(2)Sigma(+) states do not appear to form a unique perturber/pure precession pair of states.

摘要

光学-光学双共振光谱学已被用于记录 SrF 的 C(2)Pi-A(2)Pi 和 D(2)Sigma(+)-A(2)Pi 跃迁的旋转分辨光谱。在该研究中,记录了一个以前未观察到的 (2)Sigma(+)-A(2)Pi 跃迁的光谱。新的 (2)Sigma(+) 态被发现比之前标记的 D(2)Sigma(+) (v = 0) 态能量更低,其差值等于 D(2)Sigma(+) 态的振动间隔。因此,新的 (2)Sigma(+) 态被分配为 D(2)Sigma(+) 态的 v = 0 能级,并且 D(2)Sigma(+) 态的振动量子数的先前标记应该增加 1。确定了 C(2)Pi、D(2)Sigma(+) (v = 0) 和 D(2)Sigma(+) (v = 1) 态的光谱参数。发现 D(2)Sigma(+) (v = 0) 态受到扰动,最有可能是由 C(2)Pi (v =1) 态的自旋轨道分量引起的。C(2)Pi 态的自旋轨道常数相对于 A(2)Pi 态显著减小,类似于 CaF 和 SrOH。最后,C(2)Pi 和 D(2)Sigma(+) 态似乎没有形成独特的扰动态/纯进动态对。

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