Zúñiga José, Bastida Adolfo, Requena Alberto
Departamento de Química Física, Universidad de Murcia, 30100 Murcia, Spain.
J Phys Chem A. 2023 Oct 19;127(41):8663-8675. doi: 10.1021/acs.jpca.3c03122. Epub 2023 Oct 6.
In this paper, we study the quantum time evolution of oblique nonstationary vibrational states in a Hénon-Heiles oscillator system with two dissociation channels, which models the stretching vibrational motions of triatomic molecules. The oblique nonstationary states we are interested in are the eigenfunctions of the anharmonic zero-order Hamiltonian operator resulting from the transformation to oblique coordinates, which are defined as those coming from nonorthogonal coordinate rotations that express the matrix representation of the second-order Hamiltonian in a block diagonal form characterized by the polyadic quantum number = + . The survival probabilities calculated show that the oblique nonstationary states evolve within their polyadic group with a high degree of coherence up to the dissociation limits on the short time scale. The degree of coherence is certainly much higher than that exhibited by the local nonstationary states extracted from the conventional orthogonal rotation of the original normal coordinates. We also show that energy exchange between the oblique vibrational modes occurs in a much more regular way than the exchange between the local modes.
在本文中,我们研究了具有两个解离通道的亨农 - 海勒斯振子系统中倾斜非定常振动态的量子时间演化,该系统模拟了三原子分子的伸缩振动运动。我们感兴趣的倾斜非定常态是通过转换到倾斜坐标得到的非谐零阶哈密顿算符的本征函数,这些坐标定义为来自非正交坐标旋转,这种旋转将二阶哈密顿量的矩阵表示以由多原子量子数(J = n + l)表征的块对角形式表示。计算得到的存活概率表明,在短时间尺度上,倾斜非定常态在其多原子群内以高度的相干性演化直至解离极限。相干程度肯定比从原始正规坐标的传统正交旋转中提取的局部非定常态所表现出的相干程度高得多。我们还表明,倾斜振动模式之间的能量交换比局部模式之间的交换以更规则的方式发生。