首页> 外文期刊>The Journal of Chemical Physics >VALENCE SHELL PHOTOIONIZATION DYNAMICS CALCULATIONS FOR ORIENTED PF3 MOLECULES
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VALENCE SHELL PHOTOIONIZATION DYNAMICS CALCULATIONS FOR ORIENTED PF3 MOLECULES

机译:定向PF3分子的价壳光电动力学计算。

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Photoelectron angular distributions (PADs) from the ionization of fixed-in-space, oriented PF3 molecules have been computed using the CMS-X alpha method. These molecule frame distributions are richly structured and varied with a high harmonic content. Interference terms between odd- and even-partial waves create orientation in the PAD, and in some instances such oriented PADs may undergo a dramatic inversion, or reversal of direction, at a shape resonance. This phenomenon is attributable to the rapid rise in scattering phase of a single resonant partial wave component. A previously observed reversal in the experimental PF3 (A) over tilde band correlated photoelectron photofragment ion recoil direction can be understood in these terms. Good agreement is found between the experimental and; calculated molecule frame anisotropy for ionization of the 4e orbital over a range of electron kinetic energies. The assignment of the (A) over tilde band is thereby clarified, and the presence of a 4e-->ka(1)(sigma*) shape resonance at similar to 3 eV can be confirmed without the necessity to scan through the resonance energy. Other shape resonances in the range 0-25 eV are identified by the calculations; all an investigated and the resonant behavior is scrutinized with the assistance of continuum eigenchannel plots. In this manner different trapping mechanisms can be visualized and the localization of the continuum scattering functions related to virtual atomic and molecular orbitals embedded in the ionization continuum. (C) 1995 American Institute of Physics. [References: 63]
机译:已使用CMS-X alpha方法计算了空间固定的取向PF3分子电离产生的光电子角分布(PAD)。这些分子框架分布结构丰富,且谐波含量高。奇数和偶数部分波之间的干扰项会在PAD中创建方向,并且在某些情况下,这种定向的PAD可能会在形状共振时发生剧烈的反转或方向反转。该现象归因于单个谐振子波分量的散射相位的快速上升。用这些术语可以理解在波谱带相关的光电子光碎裂离子反冲方向上在实验PF3(A)中先前观察到的逆转。实验和之间找到了很好的协议;计算出的4e轨道在一定范围的电子动能下的分子框架各向异性。从而澄清了(A)在波浪带上的分配,并且无需扫描共振能量就可以确认存在类似于3 eV的4e-> ka(1)(sigma *)形状共振。通过计算可以识别出在0-25 eV范围内的其他形状共振。所有这些都进行了研究,并借助连续本征通道图仔细检查了共振行为。以这种方式,可以看到不同的捕获机制,并且与嵌入电离连续体中的虚拟原子和分子轨道有关的连续体散射功能的定位也可以。 (C)1995年美国物理研究所。 [参考:63]

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