Observations of New Dirac Points in One-Dimensionally-Rippled Graphene on Hexagonal BN Using Scanning Tunneling Spectroscopy

  • Jang, Won-Jun
  • Lee, Min Wook
  • Kim, Howon
  • Park, Sangwoo
  • Jung, Seong Jun
  • ... Kahng, Se-Jong
  • 외 2명
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초록

Theories predicted that one-dimensional superlattice potentials in graphene would induce new Dirac points, instead of gap opening, due to lattice-induced chirality of charge carriers, but experimental evidence is rarely available in the literature. Here, we report observations of new Dirac points in one-dimensionally rippled graphene on hexagonal boron nitride (h-BN) using scanning tunneling microscopy and spectroscopy. The rippled graphene, formed due to thermal procedures, showed two new Dirac points above and below the Fermi level. The energy difference between a new Dirac point and the Fermi level was proportional to 1/L, where L was the period of a ripple, in agreement with theoretical predictions. Our study shows that the one-dimensional periodic potential is an accessible component for controlling the electronic properties of graphene.

키워드

FERMIONS
제목
Observations of New Dirac Points in One-Dimensionally-Rippled Graphene on Hexagonal BN Using Scanning Tunneling Spectroscopy
저자
Jang, Won-JunLee, Min WookKim, HowonPark, SangwooJung, Seong JunLee, SungjooSong, Young JaeKahng, Se-Jong
DOI
10.1021/acs.jpcc.5b05835
발행일
2015-08-20
유형
Article
저널명
The Journal of Physical Chemistry C
119
33
페이지
19535 ~ 19538