Unconventional quantum Hall effect and Berry’s phase of 2π in bilayer graphene

被引:1
作者
K. S. Novoselov
E. McCann
S. V. Morozov
V. I. Fal’ko
M. I. Katsnelson
U. Zeitler
D. Jiang
F. Schedin
A. K. Geim
机构
[1] Manchester Centre for Mesoscience and Nanotechnology,Department of Physics
[2] University of Manchester,undefined
[3] Lancaster University,undefined
[4] Institute for Microelectronics Technology,undefined
[5] Institute for Molecules and Materials,undefined
[6] Radboud University of Nijmegen,undefined
来源
Nature Physics | 2006年 / 2卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
There are two known distinct types of the integer quantum Hall effect. One is the conventional quantum Hall effect, characteristic of two-dimensional semiconductor systems1,2, and the other is its relativistic counterpart observed in graphene, where charge carriers mimic Dirac fermions characterized by Berry’s phase π, which results in shifted positions of the Hall plateaus3,4,5,6,7,8,9. Here we report a third type of the integer quantum Hall effect. Charge carriers in bilayer graphene have a parabolic energy spectrum but are chiral and show Berry’s phase 2π affecting their quantum dynamics. The Landau quantization of these fermions results in plateaus in Hall conductivity at standard integer positions, but the last (zero-level) plateau is missing. The zero-level anomaly is accompanied by metallic conductivity in the limit of low concentrations and high magnetic fields, in stark contrast to the conventional, insulating behaviour in this regime. The revealed chiral fermions have no known analogues and present an intriguing case for quantum-mechanical studies.
引用
收藏
页码:177 / 180
页数:3
相关论文
共 21 条
  • [1] Novoselov KS(2005)Two-dimensional gas of massless Dirac fermions in graphene Nature 438, 197-200
  • [2] Zhang Y(2005)Experimental observation of the quantum Hall effect and Berry’s phase in graphene Nature 438, 201-204
  • [3] Tan JW(1956)Diamagnetism of graphite Phys. Rev. 104, 666-671
  • [4] Stormer HL(1988)Model for a quantum Hall effect without Landau levels: Condensed-matter realization of the ‘parity anomaly’ Phys. Rev. Lett. 61, 2015-2018
  • [5] Kim P(2002)Hall conductivity of a two-dimensional graphite system Phys. Rev. B 65, 245420-669
  • [6] McClure JW(2005)Unconventional integer quantum Hall effect in graphene Phys. Rev. Lett. 95, 146801-10453
  • [7] Haldane FDM(2004)Electric field effect in atomically thin carbon films Science 306, 666-634
  • [8] Zheng Y(2005)Two dimensional atomic crystals Proc. Natl Acad. Sci. USA 102, 10451-186
  • [9] Ando T(1947)The band theory of graphite Phys. Rev. 71, 622-4468
  • [10] Gusynin VP(2002)Intercalation compounds of graphite Adv. Phys. 51, 1-57