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首页> 外文期刊>Collection of Czechoslovak Chemical Communications >CONVERGENCE PROPERTIES OF QUASICLASSICAL TRAJECTORY CALCULATIONS ON DYNAMICS OF AUTOIONIZATION EVENT IN HE(2(3)S)-D-2 PENNING IONIZATION
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CONVERGENCE PROPERTIES OF QUASICLASSICAL TRAJECTORY CALCULATIONS ON DYNAMICS OF AUTOIONIZATION EVENT IN HE(2(3)S)-D-2 PENNING IONIZATION

机译:准经典轨迹计算对HE(2(3)S)-D-2潘宁电离自电离事件动力学的收敛性

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An analysis of the degree of convergence of theoretical pictures of the dynamics of the autoionization event He(2(3)S)-D-2(nu '' = 0) --> He...D-2(+)(nu') + e is presented for a number of batches of Monte Carlo calculations differing in the number of the trajectories run. The treatment of the dynamics consists in 2D classical trajectory calculations based on static characteristics which include a quantum mechanical treatment of the perturbed D-2(nu '' = 0) and D-2(+)(v') vibrational motion. The vibrational populations are dynamical averages over the local widths of the He(2(3)S)-D-2(nu '' = 0) state with respect to autoionization to D-2(+)(...He) in its v'th vibrational level and the Penning electron energies are related to the local differences between the energies of the corresponding perturbed D-2(nu '' = 0)(...He*) and D-2(+)(v')(...He) vibrational states. Special attention is paid to the connection between the requirements on the degree of convergence of the classical trajectory picture of the event and the purpose of the calculations. Information is obtained regarding a scale of the trajectory calculations required for physically sensible applications of the model to an interpretation of different type of experiments on the system: total ionization cross section measurements, Penning ionization electron spectra, subsequent 3D classical trajectory calculations of branching ratios of the products of the postionization collision process, and interpretation of electron ion coincidence measurements of the product branching ratios for individual vibrational levels of the nascent Penning ion. References: 23
机译:分析自电离事件动力学理论图景的收敛程度 He(2(3)S)-D-2(nu '' = 0) --> [He...D-2(+)(nu')] + e 表示了多批蒙特卡罗计算,这些计算的轨迹运行次数不同。动力学的处理包括基于静态特性的二维经典轨迹计算,其中包括对扰动 D-2(nu '' = 0) 和 D-2(+)(v') 振动运动的量子力学处理。振动群是 He(2(3)S)-D-2(nu '' = 0) 状态的局部宽度上相对于 D-2(+)(...He)在其第v'th振动能级和潘宁电子能能与相应扰动D-2(nu'' = 0)(...他*)和D-2(+)(v')(...He)振动状态。特别注意事件的经典轨迹图的收敛程度要求与计算目的之间的联系。获得有关将模型应用于解释系统上不同类型的实验所需的轨迹计算规模的信息:总电离截面测量、潘宁电离电子谱、后电离碰撞过程产物分支比的后续 3D 经典轨迹计算,以及产物支化比的电子离子重合测量的解释用于新生潘宁离子的单个振动水平。[参考资料: 23]

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