arXiv · 1606.06924
Self-consistent spin-wave analysis of the 1/3 magnetization plateau in the kagome antiferromagnet
Abstract
We propose a modified spin-wave theory to study the 1/3 magnetization plateau of the antiferromagnetic Heisenberg model on the kagome lattice. By the self-consistent inclusion of quantum corrections, the 1/3 plateau is stabilized over a broad range of magnetic fields for all spin quantum numbers, S. The values of the critical magnetic fields and the widths of the magnetization plateaus are fully consistent with recent numerical results from exact diagonalization and infinite projected entangled paired states.
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Zhong-Chao Wei, Hai-Jun Liao, Jing Chen, Hai-Dong Xie, Zhi-Yuan Liu, Zhi-Yuan Xie, Wei Li, Bruce Normand, Tao Xiang. 2016-06-22. Self-consistent spin-wave analysis of the 1/3 magnetization plateau in the kagome antiferromagnet. https://doi.org/10.1088/0256-307x%2F33%2F7%2F077503
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