Depto. de Ciencias Integradas y Centro de Estudios Avanzados en Física, Matemáticas y Computación , Universidad de Huelva , Huelva 21071 , Spain.
Instituto Carlos I de Física Teórica y Computacional , Universidad de Granada , Granada 18071 , Spain.
J Phys Chem A. 2019 Nov 7;123(44):9544-9551. doi: 10.1021/acs.jpca.9b07338. Epub 2019 Oct 23.
Recent works have shown that the spectroscopic access to highly excited states provides enough information to characterize transition states in isomerization reactions. Here, we show that information about the transition state of the bond-breaking HCN-HNC isomerization reaction can also be achieved with the two-dimensional limit of the algebraic vibron model. We describe the system's bending vibration with the algebraic Hamiltonian and use its classical limit to characterize the transition state. Using either the coherent state formalism or a recently proposed approach by Baraban [ 2015 , 350 , 1338 - 1342 ], we obtain an accurate description of the isomerization transition state. In addition, we show that the energy-level dynamics and the transition state wave function structure indicate that the spectrum in the vicinity of the isomerization saddle point can be understood in terms of the formalism for excited-state quantum phase transitions.
最近的研究表明,通过光谱学方法可以获取高度激发态的信息,从而对异构化反应中的过渡态进行表征。在这里,我们展示了二维代数振子模型的极限也可以提供关于 HCN-HNC 异构化反应的过渡态的信息。我们用代数哈密顿量来描述系统的弯曲振动,并利用其经典极限来对过渡态进行描述。使用相干态形式或 Baraban 最近提出的方法[2015,350,1338-1342],我们得到了对异构化过渡态的精确描述。此外,我们还表明,能级动力学和过渡态波函数结构表明,在异构化鞍点附近的光谱可以用激发态量子相变的理论来理解。