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首页> 外文期刊>The Journal of Chemical Physics >Ultrafast electron dynamics following outer-valence ionization: The impact of low-lying relaxation satellite states
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Ultrafast electron dynamics following outer-valence ionization: The impact of low-lying relaxation satellite states

机译:外价电离后的超快电子动力学:低空弛豫卫星状态的影响

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摘要

Low-lying relaxation satellites give rise to ultrafast electron dynamics following outer-valence ionization of a molecular system. To demonstrate the impact of such satellites, the evolution of the electronic cloud after sudden removal of an electron from the highest occupied molecular orbital (HOMO) of the organic unsaturated nitroso compound 2-nitroso 1,3oxazolo5,4-d1,3oxazole is traced in real time and space using ab initio methods only. Our results show that the initially created hole charge remains stationary but on top of it the system reacts by an ultrafast excitation followed by a cyclic excitation-de-excitation process which leads to a redistribution of the charge. The excitation following the removal of the HOMO electron takes place on a subfemtosecond time scale and the period of the excitation-de-excitation alternations is about 1.4 fs. In real space the processes of excitation and de-excitation represent ultrafast delocalization and localization of the charge. The results are analyzed by simple two- and three-state models.
机译:低空的弛豫卫星在分子系统的外价电离后产生超快的电子动力学。为了证明此类卫星的影响,可追溯到从有机不饱和亚硝基化合物2-亚硝基1,3-恶唑基5,4-d1,3恶唑的最高占据分子轨道(HOMO)突然移出电子后电子云的演化。仅使用从头算的方法进行实时和时空分析。我们的结果表明,最初生成的空穴电荷保持静止,但在其顶部,系统通过超快激发进行反应,然后进行循环激发-去激发过程,从而导致电荷重新分布。除去HOMO电子后的激发发生在亚飞秒级的时间范围内,激发-激发交替的周期约为1.4 fs。在现实空间中,激发和去激发的过程代表了电荷的超快速离域和定位。通过简单的二态和三态模型分析结果。

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