Engineering magnetism on graphene nanoribbons by electric field

ORAL

Abstract

Manipulating magnetism by means of the electric field is one of the ideal ways for spintronics device applications due to its precise controllable nature. We report theoretical studies of the electronic and magnetic properties of lightly doped zigzag-edged graphene nanoribbons [1] under the electric field in the ribbon width direction. Such setting imposes strong tendency to charge inhomogeneity and thus can dramatically tune the complex correlation between the spin- and charge-density waves, giving rise to a number of novel phases with distinct unusual magnetic and electronic features. Their robustness for a wide range of parameters and room temperature also facilitate their application potential.

[1] W.-C. Chen et al., Nano Letters 17, 4400 (2017)

*NSFC 11274276 and 11674158; Ministry of Science and Technology of China 2016YFA0300400; U.S. DOE DE-SC0012704

Presenters

  • Yuan Zhou

    • Department of Physics, Nanjing University

Authors

  • Yuan Zhou

    • Department of Physics, Nanjing University
  • Weiguo Yin

    • Brookhaven National Laboratory
    • Condensed Matter Physics and Materials Science Department, Brookhaven National Laboratory
    • CMPMS, Brookhaven National Laboratory
  • ShunLi Yu

    • Department of Physics, Nanjing University
  • Wenchao Chen

    • Department of Physics, Nanjing University
  • Changde Gong

    • Center for statistical and theoretical condensed matter physics, Zhejiang Normal University