论文标题

快速绿色的超快电子 - 玻色孔动力学的功能方法

Fast Green's function method for ultrafast electron-boson dynamics

论文作者

Karlsson, Daniel, van Leeuwen, Robert, Pavlyukh, Yaroslav, Perfetto, Enrico, Stefanucci, Gianluca

论文摘要

电子与量化的声子和光子的相互作用是从分子到固体的系统的超快速动力学,并且可以使用时间分辨技术在实验上可以访问过多的物理现象。 Green的功能方法提供了一种宝贵的解释工具,因为可以选择将增长复杂性的散射机制选择性地纳入理论中。但是,目前,由于繁殖时间的立方缩放,实时Green的功能模拟要么过于昂贵,要么确实忽略了玻色子上电子的反馈,从而违反了能量保护。我们提出了一种计算高效的绿色功能方案,该方案克服了这两个局限性。数值的努力随着传播时间的形式线性扩展,而电子和玻色子的同时敷料则保证了所有基本保护法的实现。我们在光学激发的狭窄带隙绝缘子中对声子驱动的松弛动力学进行了实时研究,突出了声音自由度的非热行为。我们的公式为具有前所未有的长传播时间的电子玻璃系统的第一原理模拟铺平了道路。

The interaction of electrons with quantized phonons and photons underlies the ultrafast dynamics of systems ranging from molecules to solids, and it gives rise to a plethora of physical phenomena experimentally accessible using time-resolved techniques. Green's function methods offer an invaluable interpretation tool since scattering mechanisms of growing complexity can be selectively incorporated in the theory. Currently, however, real-time Green's function simulations are either prohibitively expensive due to the cubic scaling with the propagation time or do neglect the feedback of electrons on the bosons, thus violating energy conservation. We put forward a computationally efficient Green's function scheme which overcomes both limitations. The numerical effort scales linearly with the propagation time while the simultaneous dressing of electrons and bosons guarantees the fulfillment of all fundamental conservation laws. We present a real-time study of the phonon-driven relaxation dynamics in an optically excited narrow band-gap insulator, highlighting the nonthermal behavior of the phononic degrees of freedom. Our formulation paves the way to first-principles simulations of electron-boson systems with unprecedented long propagation times.

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