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The vibrational spectrum of deuterated phosphaethyne: A quantum mechanical, classical, and semiclassical analysis

机译:氘代磷乙炔的振动光谱:量子力学,经典和半经典分析

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The vibrational spectrum of deuterated phosphaethyne (DCP) is analyzed in terms of quantum-mechanical variational calculations, classical mechanics (periodic orbits), and an effective Hamiltonian model. The quantum mechanical and classical calculations are performed with a new, spectroscopically accurate potential energy surface. The spectrum is governed by a 2 : 1 DC stretch : CP stretch anharmonic resonance, which already exists for the fundamentals. The bending degree of freedom is to a large extent decoupled. It is shown that several bifurcations in the classical phase space profoundly influence the quantum spectrum. For example, a new progression, which does not exist at very low excitation energies, comes into existence at intermediate energies. In contrast to HCP, the pure bending states gradually evolve along the isomerization path with increasing bending quantum number. (C) 2000 American Institute of Physics. [S0021-9606(00)00120-3]. [References: 36]
机译:根据量子力学变分计算,经典力学(周期性轨道)和有效的哈密顿模型对氘化磷乙炔(DCP)的振动光谱进行了分析。量子力学和经典计算是使用新的,光谱精确的势能表面执行的。频谱受2:1 DC拉伸:CP拉伸非谐共振控制,这已经存在于基本原理上。弯曲自由度在很大程度上解耦。结果表明,经典相空间中的几个分叉会深刻影响量子光谱。例如,在中等能量下就出现了一个新的进展,这种进展在非常低的激发能量下不存在。与HCP相反,随着弯曲量子数的增加,纯弯曲态会沿着异构化路径逐渐演化。 (C)2000美国物理研究所。 [S0021-9606(00)00120-3]。 [参考:36]

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