Spin Polarizations at and about the Lowest Filled Landau Level
arXiv:cond-mat/9703108 · doi:10.1209/epl/i1997-00215-y
Abstract
The spin polarization versus temperature at or near a fully filled lowest Landau level is explored for finite-size systems in a periodic rectangular geometry. Our results at which also include the finite-thickness correction are in good agreement with the experimental results. We also find that the interacting electron system results are in complete agreement with the results of the sigma model, i.e., skyrmions on a torus have a topological charge of and the Q=1 solution is like a single spin-flip excitation. Our results therefore provide direct evidence for the skyrmionic nature of the excitations at this filling factor.
4 pages, REVTEX, and 4 .ps files, To be published in Europhysics Letters
Cited by in corpus (7)
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- Temperature dependence of spin polarizations at higher Landau Levels
- Itinerant Electron Ferromagnetism in the Quantum Hall Regime
- Effect of the Equivalence Between Topological and Electric Charge on the Magnetization of the Hall Ferromagnet
- Impurity Effects and Spin Polarizations in a Narrow Quantum Hall System
- Thermal and Tunneling Pair Creation of Quasiparticles in Quantum Hall Systems
- Electronic correlation in the quantum Hall regime