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通过零动能光电子能谱和从头算计算研究 HCCCl(+)(X̃(2)Π) 中的伦纳-泰勒效应

The Renner-Teller effect in HCCCl(+)(X̃(2)Π) studied by zero-kinetic energy photoelectron spectroscopy and ab initio calculations.

作者信息

Sun Wei, Dai Zuyang, Wang Jia, Mo Yuxiang

机构信息

Department of Physics and State Key Laboratory of Low-Dimensional Quantum Physics, Tsinghua University, Beijing 100084, China.

出版信息

J Chem Phys. 2015 May 21;142(19):194304. doi: 10.1063/1.4919953.

Abstract

The spin-vibronic energy levels of the chloroacetylene cation up to 4000 cm(-1) above the ground state have been measured using the one-photon zero-kinetic energy photoelectron spectroscopic method. The spin-vibronic energy levels have also been calculated using a diabatic model, in which the potential energy surfaces are expressed by expansions of internal coordinates, and the Hamiltonian matrix equation is solved using a variational method with harmonic basis functions. The calculated spin-vibronic energy levels are in good agreement with the experimental data. The Renner-Teller (RT) parameters describing the vibronic coupling for the H-C≡C bending mode (ε4), Cl-C≡C bending mode (ε5), the cross-mode vibronic coupling (ε45) of the two bending vibrations, and their vibrational frequencies (ω4 and ω5) have also been determined using an effective Hamiltonian matrix treatment. In comparison with the spin-orbit interaction, the RT effect in the H-C≡C bending (ε4) mode is strong, while the RT effect in the Cl-C≡C bending mode is weak. There is a strong cross-mode vibronic coupling of the two bending vibrations, which may be due to a vibronic resonance between the two bending vibrations. The spin-orbit energy splitting of the ground state has been determined for the first time and is found to be 209 ± 2 cm(-1).

摘要

利用单光子零动能光电子能谱法测量了氯乙炔阳离子在基态以上高达4000 cm⁻¹的自旋 - 振转能级。还使用非绝热模型计算了自旋 - 振转能级,其中势能面由内坐标展开表示,哈密顿矩阵方程使用具有谐振基函数的变分方法求解。计算得到的自旋 - 振转能级与实验数据吻合良好。还使用有效哈密顿矩阵处理方法确定了描述H - C≡C弯曲模式(ε4)、Cl - C≡C弯曲模式(ε5)、两个弯曲振动的交叉模式振转耦合(ε45)及其振动频率(ω4和ω5)的伦纳 - 泰勒(RT)参数。与自旋 - 轨道相互作用相比,H - C≡C弯曲(ε4)模式中的RT效应很强,而Cl - C≡C弯曲模式中的RT效应较弱。两个弯曲振动存在很强的交叉模式振转耦合,这可能是由于两个弯曲振动之间的振转共振所致。首次确定了基态的自旋 - 轨道能量分裂,结果为209 ± 2 cm⁻¹。

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