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Two-Dimensional Magnetotransport in the Extreme Quantum Limit

Physical Review Letters · 1982 · Vol. 48(22) · pp. 1559–1562

Abstract

A quantized Hall plateau of ${\ensuremath{\rho}}_{\mathrm{xy}}=\frac{3h}{{e}^{2}}$, accompanied by a minimum in ${\ensuremath{\rho}}_{\mathrm{xx}}$, was observed at $T<5$ K in magnetotransport of high-mobility, two-dimensional electrons, when the lowest-energy, spin-polarized Landau level is $\frac{1}{3}$ filled. The formation of a Wigner solid or charge-density-wave state with triangular symmetry is suggested as a possible explanation.

Quantum and electron transport phenomenaPhysics of Superconductivity and MagnetismTopological Materials and PhenomenaCondensed matter physicsPhysicsWigner crystalLandau quantizationPlateau (mathematics)Quantum Hall effectElectronQuantum limitSpin (aerodynamics)Symmetry (geometry)

Funding

  • National Science Foundation
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Two-Dimensional Magnetotransport in the Extreme Quantum Limit · Scinovex