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Communication: Electron transfer mediated decay enabled by spin-orbit interaction in small krypton/xenon clusters

机译:交流:在小型k /氙团簇中,自旋轨道相互作用使电子转移介导的衰变成为可能

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In this work we study the influence of relativistic effects, in particular spin-orbit coupling, on electronic decay processes in KrXe2 clusters of various geometries. For the first time it is shown that inclusion of spin-orbit coupling has decisive influence on the accessibility of a specific decay pathway in these clusters. The radiationless relaxation process is initiated by a Kr 4s ionization followed by an electron transfer from xenon to krypton and a final second ionization of the system. We demonstrate the existence of competing electronic decay pathways depending in a subtle way on the geometry and level of theory. For our calculations a fully relativistic framework was employed where omission of spin-orbit coupling leads to closing of two decay pathways. These findings stress the relevance of an adequate relativistic description for clusters with heavy elements and their fragmentation dynamics.
机译:在这项工作中,我们研究了相对论效应,特别是自旋轨道耦合对各种几何形状的KrXe2团簇中电子衰变过程的影响。首次表明,自旋轨道耦合的加入对这些簇中特定衰变途径的可及性具有决定性影响。无辐射弛豫过程是由Kr 4s电离,随后电子从氙到to的转移以及系统的最后第二次电离引发的。我们以微妙的方式证明了竞争性电子衰变途径的存在,这取决于几何学和理论水平。对于我们的计算,使用了一个完全相对论的框架,其中自旋轨道耦合的缺失导致两条衰变路径的闭合。这些发现强调了相对论描述对于重元素簇及其碎片动力学的相关性。

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