English

Partial up-up-down order with the continuously distributed order parameter in the triangular antiferromagnet TmMgGaO4

Strongly Correlated Electrons 2020-01-14 v1 Materials Science

Abstract

Frustrated quasidoublets without time-reversal symmetry can host highly unconventional magnetic structures with continuously distributed order parameters even in a single-phase crystal. Here, we report the comprehensive thermodynamic and neutron diffraction investigation on the single crystal of TmMgGaO4_4, which entails non-Kramers Tm3+^{3+} ions arranged on a geometrically perfect triangular lattice. The crystal electric field (CEF) randomness caused by the site-mixing disorder of the nonmagnetic Mg2+^{2+} and Ga3+^{3+} ions, merges two lowest-lying CEF singlets of Tm3+^{3+} into a ground-state (GS) quasidoublet. Well below TcT_c \sim 0.7 K, a small fraction of the antiferromagnetically coupled Tm3+^{3+} Ising quasidoublets with small inner gaps condense into two-dimensional (2D) up-up-down magnetic structures with continuously distributed order parameters, and give rise to the \emph{columnar} magnetic neutron reflections below μ0Hc\mu_0H_c \sim 2.6 T, with highly anisotropic correlation lengths, ξab\xi_{ab} \geq 250aa in the triangular plane and ξc\xi_c << cc/12 between the planes. The remaining fraction of the Tm3+^{3+} ions remain nonmagnetic at 0 T and become uniformly polarized by the applied longitudinal field at low temperatures. We argue that the similar model can be generally applied to other compounds of non-Kramers rare-earth ions with correlated GS quasidoublets.

Keywords

Cite

@article{arxiv.1912.02344,
  title  = {Partial up-up-down order with the continuously distributed order parameter in the triangular antiferromagnet TmMgGaO4},
  author = {Yuesheng Li and Sebastian Bachus and Hao Deng and Wolfgang Schmidt and Henrik Thoma and Vladimir Hutanu and Yoshifumi Tokiwa and Alexander A. Tsirlin and Philipp Gegenwart},
  journal= {arXiv preprint arXiv:1912.02344},
  year   = {2020}
}

Comments

Accepted in Physical Review X. The present manuscript is significantly different from the earlier preprint, arXiv:1804.00696, in the analysis, results, and contains additional neutron diffraction data

R2 v1 2026-06-23T12:36:23.600Z