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Phase transition-induced superstructures ofβ-Sn films with atomic-scale thickness

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摘要 The ultrathinβ-Sn(001)films have attracted tremendous attention owing to its topological superconductivity(TSC),which hosts Majorana bound state(MBSs)for quantum computation.Recently,β-Sn(001)thin films have been successfully fabricated via phase transition engineering.However,the understanding of structural phase transition ofβ-Sn(001)thin films is still elusive.Here,we report the direct growth of ultrathinβ-Sn(001)films epitaxially on the highly oriented pyrolytic graphite(HOPG)substrate and the characterization of intricate structural-transition-induced superstructures.The morphology was obtained by using atomic force microscopy(AFM)and low-temperature scanning tunneling microscopy(STM),indicating a structure-related bilayer-by-bilayer growth mode.The ultrathinβ-Sn film was made of multiple domains with various superstructures.Both high-symmetric and distorted superstructures were observed in the atomic-resolution STM images of these domains.The formation mechanism of these superstructures was further discussed based on the structural phase transition ofβtoα-Sn at the atomic-scale thickness.Our work not only brings a deep understanding of the structural phase transition of Sn film at the two-dimensional limit,but also paves a way to investigate their structure-sensitive topological properties.
作者 雷乐 曹飞跃 邢淑雅 董皓宇 郭剑锋 顾尚志 耿燕燕 米烁 吴翰翔 庞斐 许瑞 季威 程志海 Le Lei;Feiyue Cao;Shuya Xing;Haoyu Dong;Jianfeng Guo;Shangzhi Gu;Yanyan Geng;Shuo Mi;Hanxiang Wu;Fei Pang;Rui Xu;Wei Ji;Zhihai Cheng(Beijing Key Laboratory of Optoelectronic Functional Materials&Micro-nano Devices,Department of Physics,Renmin University of China,Beijing 100872,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第9期434-439,共6页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.61674045,61911540074,and 21622304) the Fund from the Ministry of Science and Technology of China(Grant No.2016YFA0200700) the Strategic Priority Research Program and Key Research Program of Frontier Sciences(Chinese Academy of Sciences)(Grant Nos.XDB30000000 and QYZDB-SSW-SYS031) Zhihai Cheng was supported by the Fundamental Research Funds for the Central Universities and the Research Funds of Renmin University of China(Grant No.21XNLG27).
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