Energy Structure and Quantized Hall Effect of Two-Dimensional Holes

H. L. Störmer, Z. Schlesinger, A. M. Chang(Princeton University), D. C. Tsui(Princeton University), A. C. Gossard, W. Wiegmann
Physical Review Letters
July 11, 1983
Cited by 339

Abstract

Combined magnetotransport and cyclotron-resonance experiments in a two-dimensional hole system at a modulation-doped GaAs-(AlGa)As heterojunction show that the Kramers degeneracy of the lowest subband is lifted for finite $k$ giving rise to two cyclotron masses ${{m}_{1}}^{*}=0.38{m}_{0}$ and ${{m}_{2}}^{*}=0.60{m}_{0}$ at ${E}_{\mathrm{F}}=2.4$ meV. The observation of plateaus in ${\ensuremath{\rho}}_{xy}$ shows that the quantized Hall effect is independent of the details of the host band structure.


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