Realization of Two‐Dimensional Intrinsic Polar Metal in a Buckled Honeycomb Binary Lattice

Author:

Wang Yihe12,Li Dong3,Duan Sisheng4,Sun Shuo5,Ding Yishui12,Bussolotti Fabio6,Sun Mingyue14,Chen Mingxi6,Wang Meng12,Chen Lan3,Wu Kehui3,Goh Kuan Eng Johnson6,Wee Andrew T. S.4,Zhou Miao78,Feng Baojie3,Hua Chenqiang78,Huang Yu Li1ORCID,Chen Wei124

Affiliation:

1. Joint School of National University of Singapore and Tianjin University International Campus of Tianjin University Binhai New City Fuzhou 350207 P. R. China

2. Department of Chemistry National University of Singapore Singapore 117543 Singapore

3. Institute of Physics Chinese Academy of Sciences Beijing 100190 China

4. Department of Physics National University of Singapore Singapore 117542 Singapore

5. Department of Physics Shanghai Key Laboratory of High Temperature Superconductors Shanghai University Shanghai 200444 China

6. Institute of Materials Research and Engineering (IMRE) Agency for Science Technology and Research (A*STAR) 2 Fusionopolis Way, #08‐03 Innovis Singapore 138634 Republic of Singapore

7. Hangzhou International Innovation Institute Beihang University Hangzhou 311115 China

8. School of Physics Beihang University Beijing 100191 P. R. China

Abstract

AbstractStructural topology and symmetry of a two‐dimensional (2D) network play pivotal roles in defining its electrical properties and functionalities. Here, a binary buckled honeycomb lattice with C3v symmetry, which naturally hosts topological Dirac fermions and out‐of‐plane polarity, is proposed. It is successfully achieved in a group IV‐V compound, namely monolayer SiP epitaxially grown on Ag(111) surface. Combining first‐principles calculations with angle‐resolved photoemission spectroscopy, the degeneration of the Dirac nodal lines to points due to the broken horizonal mirror symmetry is elucidated. More interesting, the SiP monolayer manifests metallic nature, which is mutually exclusive with polarity in conventional materials. It is further found that the out‐of‐plane polarity is strongly suppressed by the metallic substrate. This study not only represents a breakthrough of realizing intrinsic polarity in 2D metallic material via ingenious design but also provides a comprehensive understanding of the intricate interplay of many exotic low‐dimensional quantum phenomena.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Fujian Province

National Research Foundation Singapore

Natural Science Foundation of Zhejiang Province

Chinese Academy of Sciences

Agency for Science, Technology and Research

Beijing Municipal Natural Science Foundation

Ministry of Science and Technology of the People's Republic of China

Publisher

Wiley

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