English

Deformation of the triangular spin-$\frac{1}{2}$ lattice in Na$_2$SrCo(PO$_4$)$_2$

Strongly Correlated Electrons 2022-08-12 v2

Abstract

Crystal structure and thermodynamic properties of Na2_2SrCo(PO4_4)2_2, the chemical sibling of the triangular quantum spin-liquid candidate Na2_2BaCo(PO4_4)2_2, are reported. From single crystal x-ray diffraction and high-resolution synchrotron x-ray powder diffraction, the compound was found to crystallize in the monoclinic space group P21/aP2_1/a at room temperature, in contrast to the trigonal Na2_2BaCo(PO4_4)2_2. Above 650 K, the symmetry of Na2_2SrCo(PO4_4)2_2 changes to C2/mC2/m, while around 1025 K a further transformation toward trigonal symmetry is observed. The monoclinic symmetry leads to a small deformation of the CoO6_6 octahedra beyond the trigonal distortion ubiquitous in this structure type, and results in the stronger gg-tensor anisotropy (gz/gxy=1.6g_{\text{z}}/g_{\text{xy}} = 1.6 ) as well as the increased XXZ anisotropy (Jz/Jxy=2.1J_{\text{z}}/J_{\text{xy}} = 2.1) compared to the Ba compound (gz/gxy=1.1g_{\text{z}}/g_{\text{xy}} = 1.1 , Jz/Jxy=1.5J_{\text{z}}/J_{\text{xy}} = 1.5), while the average coupling strength, Jav/kB=(2Jxy+Jz)/3kB1.3KJ_{\text{av}}/k_{\text{B}}=(2J_{\text{xy}}+J_{\text{z}})/3k_\text{B}\simeq 1.3\,\text{K}, remains unchanged. The N\'{e}el temperature increases from 140 mK (Ba) to 600 mK (Sr), and an uncompensated in-plane moment of 0.066(4)μB/f.u.0.066(4)\mu_{\text{B}}/\text{f.u.} appears. We show that the ordering temperature of a triangular antiferromagnet is capably controlled by its structural distortions.

Keywords

Cite

@article{arxiv.2205.07740,
  title  = {Deformation of the triangular spin-$\frac{1}{2}$ lattice in Na$_2$SrCo(PO$_4$)$_2$},
  author = {Vera P. Bader and Jan Langmann and Philipp Gegenwart and Alexander A. Tsirlin},
  journal= {arXiv preprint arXiv:2205.07740},
  year   = {2022}
}