论文标题

Cu $ _2 $ o的量子机械复发光谱中激子轨道的签名

Signatures of exciton orbits in quantum mechanical recurrence spectra of Cu$_2$O

论文作者

Ertl, Jan, Marquardt, Michael, Schumacher, Moritz, Rommel, Patric, Main, Jörg, Bayer, Manfred

论文摘要

T. Kazimierczuk等人的开创性作品。 [Nature 514,343(2014)]表明,在某个制度中存在高度激发的激发剂状态,在该制度中,对应原理适用,量子力学变成了经典的力学,但是,基于对激子的经典方法,对激子光谱的任何解释仍然缺失。在这里,我们通过计算和比较氧化热的量子机械和半经典复发光谱来缩小这一差距。我们表明,量子机械复发光谱表现出峰值,通过应用半经典理论和缩放转化,它可以与经典的周期性激子轨道直接相关。半经典理论在激子物理学上的应用需要对经典激子动力学的详细分析,包括三维轨道,这些轨道与氢样的开普勒轨道巨大偏离。我们的发现通过将激子的量子机械带结构分组与相应的经典激子动力学直接联系起来,从而阐明了半导体中激素的重要方面。

The seminal work by T. Kazimierczuk et al. [Nature 514, 343 (2014)] has shown the existence of highly excited exciton states in a regime, where the correspondence principle is applicable and quantum mechanics turns into classical mechanics, however, any interpretation of exciton spectra based on a classical approach to excitons is still missing. Here, we close this gap by computing and comparing quantum mechanical and semiclassical recurrence spectra of cuprous oxide. We show that the quantum mechanical recurrence spectra exhibit peaks, which, by application of semiclassical theories and a scaling transformation, can be directly related to classical periodic exciton orbits. The application of semiclassical theories to exciton physics requires the detailed analysis of the classical exciton dynamics, including three-dimensional orbits, which strongly deviate from hydrogenlike Keplerian orbits. Our findings illuminate important aspects of excitons in semiconductors by directly relating the quantum mechanical band-structure splittings of excitons to the corresponding classical exciton dynamics.

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