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Nanostructured Carbon Allotropes with Weyl-like Loops and Points

  • Yuanping Chen*
  • , Yuee Xie
  • , Shengyuan A. Yang*
  • , Hui Pan
  • , Fan Zhang*
  • , Marvin L. Cohen
  • , Shengbai Zhang*
  • *此作品的通讯作者
  • XiangTan University
  • Rensselaer Polytechnic Institute
  • Singapore University of Technology and Design
  • University of Texas at Dallas
  • Lawrence Berkeley National Laboratory

科研成果: 期刊稿件快报同行评审

摘要

Carbon allotropes are subject of intense investigations for their superb structural, electronic, and chemical properties, but not for topological band properties because of the lack of strong spin–orbit coupling (SOC). Here, we show that conjugated p-orbital interactions, common to most carbon allotropes, can in principle produce a new type of topological band structure, forming the so-called Weyl-like semimetal in the absence of SOC. Taking a structurally stable interpenetrated graphene network (IGN) as example, we show, by first-principles calculations and tight-binding modeling, that its Fermi surface is made of two symmetry-protected Weyl-like loops with linear dispersion along perpendicular directions. These loops are reduced to Weyl-like points upon breaking of the inversion symmetry. Because of the topological properties of these band-structure anomalies, remarkably, at a surface terminated by vacuum there emerges a flat band in the loop case and two Fermi arcs in the point case. These topological carbon materials may also find applications in the fields of catalysts.

源语言英语
页(从-至)6974-6978
页数5
期刊Nano Letters
15
10
DOI
出版状态已出版 - 14 10月 2015

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