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Witnessing the formation and relaxation of dressed quasi-particles in a strongly correlated electron system

机译:见证强相关电子系统中修饰的准粒子的形成和弛豫

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摘要

The non-equilibrium approach to correlated electron systems is often based on the paradigm that different degrees of freedom interact on different timescales. In this context, photo-excitation is treated as an impulsive injection of electronic energy that is transferred to other degrees of freedom only at later times. Here, by studying the ultrafast dynamics of quasi-particles in an archetypal strongly correlated charge-transfer insulator (La2CuO4+δ), we show that the interaction between electrons and bosons manifests itself directly in the photo-excitation processes of a correlated material. With the aid of a general theoretical framework (Hubbard-Holstein Hamiltonian), we reveal that sub-gap excitation pilots the formation of itinerant quasi-particles, which are suddenly dressed by an ultrafast reaction of the bosonic field.
机译:相关电子系统的非平衡方法通常基于不同自由度在不同时间尺度上相互作用的范例。在这种情况下,光激励被视为电子能量的脉冲注入,仅在以后的时间转移到其他自由度。在这里,通过研究原型强相关电荷转移绝缘子(La2CuO4 +δ)中准粒子的超快动力学,我们表明电子和玻色子之间的相互作用直接在相关材料的光激发过程中表现出来。借助于一般的理论框架(Hubbard-Holstein Hamiltonian),我们揭示了子间隙激发引导了流动的准粒子的形成,准粒子突然被波场的超快速反应所修饰。

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