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氧化亚铜中巨型激子的非对称里德堡阻塞

Asymmetric Rydberg blockade of giant excitons in Cuprous Oxide.

作者信息

Heckötter Julian, Walther Valentin, Scheel Stefan, Bayer Manfred, Pohl Thomas, Aßmann Marc

机构信息

Experimentelle Physik 2, Technische Universität Dortmund, Dortmund, Germany.

Center for Complex Quantum Systems, Department of Physics and Astronomy, Aarhus University, Aarhus C, Denmark.

出版信息

Nat Commun. 2021 Jun 11;12(1):3556. doi: 10.1038/s41467-021-23852-z.

Abstract

The ability to generate and control strong long-range interactions via highly excited electronic states has been the foundation for recent breakthroughs in a host of areas, from atomic and molecular physics to quantum optics and technology. Rydberg excitons provide a promising solid-state realization of such highly excited states, for which record-breaking orbital sizes of up to a micrometer have indeed been observed in cuprous oxide semiconductors. Here, we demonstrate the generation and control of strong exciton interactions in this material by optically producing two distinct quantum states of Rydberg excitons. This is made possible by two-color pump-probe experiments that allow for a detailed probing of the interactions. Our experiments reveal the emergence of strong spatial correlations and an inter-state Rydberg blockade that extends over remarkably large distances of several micrometers. The generated many-body states of semiconductor excitons exhibit universal properties that only depend on the shape of the interaction potential and yield clear evidence for its vastly extended-range and power-law character.

摘要

通过高激发电子态产生和控制强长程相互作用的能力,是近期从原子和分子物理到量子光学与技术等众多领域取得突破的基础。里德堡激子为这种高激发态提供了一种很有前景的固态实现方式,在氧化亚铜半导体中确实观察到了高达微米级的破纪录轨道尺寸。在此,我们通过光学产生里德堡激子的两种不同量子态,证明了在这种材料中强激子相互作用的产生和控制。这通过双色泵浦 - 探测实验得以实现,该实验允许对相互作用进行详细探测。我们的实验揭示了强空间相关性的出现以及跨越显著的几微米大距离的态间里德堡阻塞。所产生的半导体激子多体态展现出仅依赖于相互作用势形状的普遍性质,并为其极长程和幂律特性提供了明确证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acca/8196172/d928b6c93d9b/41467_2021_23852_Fig1_HTML.jpg

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