Electron interactions in graphene in a strong magnetic field

被引:181
作者
Goerbig, M. O. [1 ]
Moessner, R.
Doucot, B.
机构
[1] Univ Paris 11, CNRS, UMR 8502, Phys Solides Lab, Orsay, France
[2] Ecole Normale Super, CNRS, UMR 8549, Phys Theor Lab, Paris, France
[3] Univ Paris 06 & 7, CNRS, UMR 7589, Phys Theor & Hautes Energies Lab, Paris, France
来源
PHYSICAL REVIEW B | 2006年 / 74卷 / 16期
关键词
D O I
10.1103/PhysRevB.74.161407
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Graphene in the quantum Hall regime exhibits a multicomponent structure due to the electronic spin and chirality degrees of freedom. While the applied field breaks the spin symmetry explicitly, we show that the fate of the chirality SU(2) symmetry is more involved: The leading symmetry-breaking terms differ in origin when the Hamiltonian is projected onto the central (n=0) rather than any other Landau levels. Our description at the lattice level leads to a Harper equation; in its continuum limit, the ratio of lattice constant a and magnetic length l(B) assumes the role of a small control parameter in different guises. The leading symmetry-breaking terms are lattice effects, algebraically small in a/l(B). We analyze the Haldane pseudopotentials for graphene, and evaluate the easy-plane anisotropy of the graphene ferromagnet.
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页数:4
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