English

Fractionally quantized Berry phases of magnetization plateaux in spin-$1/2$ Heisenberg multimer chains

Strongly Correlated Electrons 2018-12-05 v2

Abstract

We study the fractionally quantized ZNZ_N Berry phase, γN=0,2πN,4πN,,2(N1)πN\gamma_N=0, {2\pi \over N}, {4\pi \over N},\ldots, {2(N-1)\pi \over N}, to characterize local NN-mer spin structures at magnetization plateaux in spin-1/2 Heisenberg multimer (NN-mer) models, i.e., highly frustrated NN-leg ladder models, which are generalizations of an orthogonal dimer chain and have exact ground states in the strong multimer coupling region. We demonstrate that all NN types of Berry phases, which characterize magnetization-plateau phases, appear in a magnetic phase diagram when N=2N=2 and 44. We show that magnetization plateau with magnetization m\langle m\rangle and DD-fold degenerated states has γN=π(m1)D\gamma_N=\pi (\langle m\rangle-1) D, except for the Haldane phase with γN=0\gamma_N=0. In addition, we find that a complementary ZNZ_N Berry phase becomes non-zero in the S=N/2S=N/2 Haldane phase for N=2N=2 and 4. Because the exact quantization of the ZNZ_N Berry phases is protected by the translational (or rotational) symmetry along the rung direction, the ZNZ_N Berry phase has the potential to be applied for a wide class of magnetization plateaux in coupled multimer systems.

Keywords

Cite

@article{arxiv.1808.10138,
  title  = {Fractionally quantized Berry phases of magnetization plateaux in spin-$1/2$ Heisenberg multimer chains},
  author = {Isao Maruyama and Shin Miyahara},
  journal= {arXiv preprint arXiv:1808.10138},
  year   = {2018}
}

Comments

5 pages, 4 figures