English

Dynamical structure factors of S=1 bond-alternating Heisenberg chains

Statistical Mechanics 2009-11-10 v1

Abstract

We calculate the dynamical structural factor of the S=1 bond-alternating Heisenberg chain. In the Haldane phase, the lowest excited states form the lower edge of the multimagnon continuum in 0qqc0 \leq q \leq q_c and the one-magnon mode in qcqπq_c \leq q \leq \pi. As the system approaches the gapless point, qcq_c shifts towards q=πq=\pi and the largest integrated intensity of the one-magnon mode is decreased. In the singlet-dimer phase, the one-magnon mode appears in 0qqc0 \leq q \leq q_c. As the bond-alternation becomes strong, qcq_c shifts towards q=πq=\pi. In the antiferromagnetic-ferromagnetic bond-alternation region with a strong ferromagnetic coupling, the lowest excited states form the lower edge of the multimagnon continuum in 0q0.2π0 \leq q \leq 0.2\pi and 0.8πqπ0.8\pi \leq q \leq \pi, and the one-magnon mode appears in 0.2π<q<0.8π0.2\pi<q<0.8\pi. The largest integrated intensity of the one-magnon mode is 93%, which is slightly smaller than that in the S=1 Haldane-gap system. We further discuss the dynamical structural factor in connection with the inelastic neutron-scattering experiments.

Keywords

Cite

@article{arxiv.cond-mat/0309178,
  title  = {Dynamical structure factors of S=1 bond-alternating Heisenberg chains},
  author = {Takahumi Suzuki and Sei-ichiro Suga},
  journal= {arXiv preprint arXiv:cond-mat/0309178},
  year   = {2009}
}

Comments

6 pages, 3 figures