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Real-time dynamics of Auger wave packets and decays in ultrafast charge migration processes

机译:超快电荷迁移过程中螺旋钻波包的实时动态和衰减

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摘要

The Auger decay is a relevant recombination channel during the first few femtoseconds of molecular targets impinged by attosecond XUV or soft x-ray pulses. Including this mechanism in time-dependent simulations of charge-migration processes is a difficult task, and Auger scatterings are often ignored altogether. In this work we present an advance of the current state-of-the-art by putting forward a real-time approach based on nonequilibrium Green's functions suitable for first-principles calculations of molecules with tens of active electrons. To demonstrate the accuracy of the method we report comparisons against accurate grid simulations of one-dimensional systems. We also predict a highly asymmetric profile of the Auger wave packet, with a long tail exhibiting ripples temporally spaced by the inverse of the Auger energy.
机译:在由Attosecond XUV或软X射线脉冲中冲击的分子靶标的前几个飞秒期间,螺旋衰减是一个相关的重组通道。 在时间依赖于电荷迁移过程模拟中,包括这种机制是一项艰巨的任务,并且螺旋散射通常忽略。 在这项工作中,我们通过基于非QuiLibium绿色功能提出了适用于具有数十个活性电子的分子的第一原理计算的实时方法来提前进行当前的最先进的先进。 为了证明我们报告了针对一维系统的准确网格仿真比较的方法的准确性。 我们还预测了螺旋钻波包的高度不对称的曲线,具有长尾部,其呈现螺旋钻能量的倒数时间间隔开的涟漪。

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