English

Coupled dimerized alternating-bond quantum spin chains in the distorted honeycomb-lattice magnet Cu$_5$SbO$_6$

Strongly Correlated Electrons 2026-03-09 v3

Abstract

We analyze powder-averaged inelastic neutron scattering and magnetization data for the distorted honeycomb compound Cu5_5SbO6_6 using a first-order dimer expansion calculation and quantum Monte Carlo simulations. We show that, in contrast to the previously proposed honeycomb lattice model, Cu5_5SbO6_6 accommodates interacting dimerized spin chains with alternating ferromagnetic-antiferromagnetic couplings along the chain. Moreover, unlike the typical couplings observed in other Cu2+^{2+}-based distorted honeycomb magnets, the spin chains in Cu5_5SbO6_6 primarily couple through an antiferromagnetic coupling that arises between the honeycomb layers, rather than the expected interchain coupling in the layers. This finding reveals a different magnetic coupling scheme for Cu5_5SbO6_6. In addition, utilizing x-ray spectroscopy and transmission electron microscopy, we also refine the crystal structure and stacking-fault model of the compound.

Keywords

Cite

@article{arxiv.2511.05037,
  title  = {Coupled dimerized alternating-bond quantum spin chains in the distorted honeycomb-lattice magnet Cu$_5$SbO$_6$},
  author = {C. Piyakulworawat and K. Morita and Y. Fukumoto and W. -Y. Hsieh and W. -T. Chen and K. Nakajima and S. Ohira-Kawamura and Y. Zhao and S. Wannapaiboon and P. Piyawongwatthana and T. J. Sato and K. Matan},
  journal= {arXiv preprint arXiv:2511.05037},
  year   = {2026}
}

Comments

17 pages, 8 figures