arXiv · cond-mat/9505099
Broken rotation symmetry in the fractional quantum Hall system
Abstract
We demonstrate that the two-dimensonal electron system in a strong perpendicular magnetic field has stable states which break rotational but not translational symmetry. The Laughlin fluid becomes unstable to these states in quantum wells whose thickness exceeds a critical value which depends on the electron density. The order parameter at 1/3 reduced density resembles that of a nematic liquid crystal, in that a residual two-fold rotation axis is present in the low symmetry phase. At filling factors 1/5 and 1/7, there are states with four- and six-fold axes, as well. We discuss the experimental detection of these phases.
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K. Musaelian, Robert Joynt. 1995-05-22. Broken rotation symmetry in the fractional quantum Hall system. https://doi.org/10.1088/0953-8984%2F8%2F8%2F002
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