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Midgap States in Antiferromagnetic Heisenberg Chains with A Staggered Field

Strongly Correlated Electrons 2011-02-19 v1

Abstract

We study low-energy excitations in antiferromagnetic Heisenberg chains with a staggered field which splits the spectrum into a longitudinal and a transverse branch. Bound states are found to exist inside the field induced gap in both branches. They originate from the edge effects and are inherent to spin-chain materials. The sine-Gordon scaling hs2/3loghs1/6h_s^{2/3}|\log h_s|^{1/6} (hsh_s: the staggered field) provides an accurate description for the gap and midgap energies in the transverse branch for S=1/2S=1/2 and the midgap energies in both branches for S=3/2S=3/2 over a wide range of magnetic field; however, it can fit other low-energy excitations only at much lower field. Moreover, the integer-spin S=1 chain displays scaling behavior that does not fit this scaling law. These results reveal intriguing features of magnetic excitations in spin-chain materials that deserve further investigation.

Keywords

Cite

@article{arxiv.cond-mat/0511467,
  title  = {Midgap States in Antiferromagnetic Heisenberg Chains with A Staggered Field},
  author = {Jizhong Lou and Changfeng Chen and Jize Zhao and Xiaoqun Wang and Tao Xiang and Zhaobin Su and Lu Yu},
  journal= {arXiv preprint arXiv:cond-mat/0511467},
  year   = {2011}
}

Comments

4 pages, 4figures