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铅薄膜上的苝-3,4,9,10-四羧酸分子单层:一种不寻常的π电子近藤体系及其与量子限域超导体的相互作用

PTCDA Molecular Monolayer on Pb Thin Films: An Unusual π-Electron Kondo System and Its Interplay with a Quantum-Confined Superconductor.

作者信息

Lu Shuangzan, Nam Hyoungdo, Xiao Penghao, Liu Mengke, Guo Yanping, Bai Yusong, Cheng Zhengbo, Deng Jinghao, Li Yanxing, Zhou Haitao, Henkelman Graeme, Fiete Gregory A, Gao Hong-Jun, MacDonald Allan H, Zhang Chendong, Shih Chih-Kang

机构信息

School of Physics and Technology, Wuhan University, Wuhan 430072, China.

Department of Physics, the University of Texas at Austin, Austin, Texas 78712, USA.

出版信息

Phys Rev Lett. 2021 Oct 29;127(18):186805. doi: 10.1103/PhysRevLett.127.186805.

Abstract

The hybridization of magnetism and superconductivity has been an intriguing playground for correlated electron systems, hosting various novel physical phenomena. Usually, localized d or f electrons are central to magnetism. In this study, by placing a PTCDA (3,4,9,10-perylene tetracarboxylic dianhydride) molecular monolayer on ultrathin Pb films, we built a hybrid magnetism/superconductivity (M/SC) system consisting of only sp electronic levels. The magnetic moments reside in the unpaired molecular orbital originating from interfacial charge transfers. We reported distinctive tunneling spectroscopic features of such a Kondo screened π electron impurity lattice on a superconductor in the regime of T_{K}≫Δ, suggesting the formation of a two-dimensional bound states band. Moreover, moiré superlattices with tunable twist angle and the quantum confinement in the ultrathin Pb films provide easy and flexible implementations to tune the interplay between the Kondo physics and the superconductivity, which are rarely present in M/SC hybrid systems.

摘要

磁性与超导性的杂化一直是关联电子系统中一个引人入胜的研究领域,其中存在各种新颖的物理现象。通常,局域化的d或f电子是磁性的核心。在本研究中,通过在超薄Pb膜上放置一层PTCDA(3,4,9,10-苝四羧酸二酐)分子,我们构建了一个仅由sp电子能级组成的磁性/超导性(M/SC)混合系统。磁矩存在于源于界面电荷转移的未配对分子轨道中。我们报道了在T_{K}≫Δ regime下,这种近藤屏蔽的π电子杂质晶格在超导体上的独特隧穿光谱特征,这表明形成了二维束缚态能带。此外,具有可调扭转角的莫尔超晶格以及超薄Pb膜中的量子限制,为调节近藤物理与超导性之间的相互作用提供了简便且灵活的方法,而这种相互作用在M/SC混合系统中很少见。

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