Topological node-line semimetal in three-dimensional graphene networks

Hongming Weng, Yunye Liang, Qiunan Xu, Rui Yu, Zhong Fang, Xi Dai, and Yoshiyuki Kawazoe
Phys. Rev. B 92, 045108 – Published 8 July 2015

Abstract

Graphene, a two-dimensional (2D) carbon sheet, acquires many of its amazing properties from the Dirac point nature of its electronic structures with negligible spin-orbit coupling. Extending to 3D space, graphene networks with negative curvature, called Mackay-Terrones crystals (MTCs), have been proposed and experimentally explored, yet their topological properties have yet to be discovered. Based on the first-principle calculations, we report an all-carbon MTC with topologically nontrivial electronic states by exhibiting node lines in bulk. When the node lines are projected onto surfaces to form circles, “drumhead”-like flat surface bands nestled inside of the circles are formed. The bulk node line can evolve into a 3D Dirac point in the absence of inversion symmetry, the existence of which has been shown to be plausible in recent experiments.

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  • Received 15 January 2015
  • Revised 20 May 2015

DOI:https://doi.org/10.1103/PhysRevB.92.045108

©2015 American Physical Society

Authors & Affiliations

Hongming Weng1,2,*, Yunye Liang3, Qiunan Xu1, Rui Yu4, Zhong Fang1,2, Xi Dai1,2, and Yoshiyuki Kawazoe3,5

  • 1Beijing National Laboratory for Condensed Matter Physics, and Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China
  • 2Collaborative Innovation Center of Quantum Matter, Beijing, China
  • 3New Industry Creation Hatchery Center, Tohoku University, Sendai 980-8579, Japan
  • 4International Center for Materials Nanoarchitectonics (WPI-MANA), National Institute for Materials Science, Tsukuba 305-0044, Japan
  • 5Thermophysics Institute, Siberian Branch, Russian Academy of Sciences, Russia

  • *hmweng@iphy.ac.cn

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Issue

Vol. 92, Iss. 4 — 15 July 2015

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