Barriers, thresholds, and resonances: Spectral quantization of the transition state for the collinear D+H2 reaction
Barriers, thresholds, and resonances: Spectral quantization of the transition state for the collinear D+H2 reaction
复制标题
势垒、阈值和共振:共线 D H2 反应过渡态的光谱量化
DOI:
10.1063/1.469391
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发表时间:
1995
影响因子:
4.4
通讯作者:
R. T. Skodje
中科院分区:
文献类型:
--
作者:
R. Sadeghi;R. T. Skodje
We have analyzed the quantum dynamics of the collinear D+H2 reaction in the region of the transition state on the DMBE potential energy surface. Using the spectral quantization method, the dynamical features of the transition state are mapped out through a sequence of hypothetical Franck–Condon spectra. These spectra are generated by time‐dependent wave packet dynamics. A comprehensive analysis of the spectra has revealed three distinct classes of peaks associated with (1) conventional reactive resonances, (2) threshold anomalies, and (3) barrier resonances. Individual peaks in the spectra are assigned through the use of time‐independent wave functions which are obtained by Fourier transformation of the wave packet at the peak energies. The positions, lifetimes, and wave functions are extracted for all 23 conventional and barrier resonances. A new analytic line shape formula is developed to fit the spectral peaks of the barrier resonances. The exact quantum analysis is also supplemented with a semiclassic...