Interplay of short-range bond order and A-type antiferromagnetic order in metallic triangular lattice GdZn$_3$P$_3$
Abstract
We investigate a hexagonal ScAlC-type antiferromagnet GdZnP single crystal. Compared with antiferromagnetic topological material EuMX (M=Zn, Cd; X=P, As), the GdZnP features an additional ZnP trigonal planar units. Notably, single-crystal X-ray diffraction analysis reveals that Zn and P atoms within trigonal planar layer exhibit significant anisotropic displacement parameters with a space group of P63/mmc. Meanwhile, scanning transmission electron microscopy experiment demonstrates the presence of interstitial P atoms above and below the ZnP honeycomb lattice, suggesting potential ZnP bond instability within the ZnP trigonal layers. Concerning the triangular Gd layer, the magnetic susceptibility and heat capacity measurements reveal long-range antiferromagnetic order at T = 4.5 K. Below T, the in-plane is nearly 4 times the along axis, indicative of strong magnetic anisotropy. The Curie Weiss fitting to the low temperature data reveals ferromagnetic interaction ( = 5.2 K) in ab-plane, and antiferromagnetic interaction ( = -1 K) along c axis, suggesting the ground state as an A-type antiferromagnetic order. Correspondingly, the density function theory calculation shows that GdZnP is an indirect semiconductor with a band gap 0.27 eV, supported by the resistivity measurement on polycrystal sample. Interestingly, the GdZnP single crystal exhibits metallic conductivity with an anomaly at T, likely associated with the observation of interstitial P atoms mentioned above. Therefore, our results establish GdZnP system as a concrete example for investigating the coupling between charge carrier and triangular lattice magnetism in the two-dimensional lattice framework, on the background of short-range bond order.
Keywords
Cite
@article{arxiv.2507.11468,
title = {Interplay of short-range bond order and A-type antiferromagnetic order in metallic triangular lattice GdZn$_3$P$_3$},
author = {Jiesen Guo and Fan Yang and Yuzhou He and Xinyang Liu and Zheng Deng and Qinghua Zhang and Xiancheng Wang and Xianlei Sheng and Wei Li and Changqing Jin and Kan Zhao},
journal= {arXiv preprint arXiv:2507.11468},
year = {2026}
}
Comments
This manuscript contains 18 pages and 6 figures, with Supplemental Materials not included