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Vibrational spectroscopy and potential energy surface analysis of the X˜ and B˜ states of thiophosgene.

机译:硫光气的X〜和B〜态的振动光谱和势能表面分析。

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Nearly 1,000 (1A 1) → (1A 1) vibronic transitions of SCCl2, originating from eight (1A1) state vibrational levels, have been measured by dispersed fluorescence spectroscopy. More than 370 of these vibrational fundamentals, overtones, and combination bands were assigned and fit with a simple spectroscopic Hamiltonian. Observed transitions are highly Franck-Condon active in the CS stretching (ν1) and out-of-plane bending (ν4) modes, and extend in energy beyond the lowest molecular dissociation threshold. A full six-dimensional potential energy surface transformed to a normal coordinate representation has been fit to the experimental (1 A1) levels up to 8,000 cm−1. A six-dimensional multi-reference PES has also been fit, to a series of CASSCF ab initio calculations modeling the (1 A1) state. Wavefunctions for both the (1A1) and (1A1) states were calculated in harmonic oscillator bases using the same normal coordinate representations. Along with an electronic transition dipole surface generated from the CASSCF points, the wavefunctions were used to calculate ( 1A1) → ( 1A1) vibronic transition intensities. In addition, SCCl2 is an excellent system for exploring vibrational dynamics. One scheme for measuring vibrational dephasing in SCCl2 is presented. The multi-photon scheme was developed from spectroscopic investigations of the molecule's fluorescence lifetimes, (pre-) dissociation thresholds, and electronic state multi-photon up-pumping tendencies.
机译:将近1,000个 B〜 1 A 1 )→ X〜 2 的> 1 A 1 )振动转变,起源于八个 B〜(<用分散荧光光谱法测量了super> 1 A 1 )状态的振动水平。这些振动的基本原理,泛音和组合频段中的370多个已分配并与简单的光谱哈密顿量拟合。在CS拉伸(ν 1 )和面外弯曲(ν 4 )模式下,观察到的跃迁具有很高的Franck-Condon活性,并且能量扩展到最低分子解离阈值。已将完整的六维势能面转换为法线坐标表示,已适合实验 X〜 1 A 1 )级别达到8,000 cm −1 。六维多参考PES也已拟合到一系列模拟 B〜 1 的计算中> A 1 )状态。 X〜 1 A 1 )和 B〜(使用相同的法向坐标表示,在谐波振荡器基中计算 1 A 1 )状态。结合从CASSCF点生成的电子跃迁偶极子表面,使用波函数计算 B〜 1 A 1 < / sub>)→ X〜 1 A 1 )振动强度。此外,SCCl 2 是探索振动动力学的出色系统。提出了一种测量SCCl 2 中振动相移的方案。多光子方案是通过对分子的荧光寿命,(解离)阈值和电子态多光子向上吸收趋势的光谱学研究开发出来的。

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