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    Noncollinear antiferromagnetic structure and physical properties of CrRhAs with distorted kagome lattice

    Chenglin Shang1, Daye Xu1, Bingxian Shi1, Xuejuan Gui1, Zhongcen Sun1, Juanjuan Liu1, Jinchen Wang1, Hongxia Zhang1, Hongliang Wang2 et al.

    Lijie Hao2 and Peng Cheng1,*

    • *Contact author: pcheng@ruc.edu.cn

    Phys. Rev. B 113, 184430 – Published 7 May, 2026

    DOI: https://doi.org/10.1103/m1yw-sslt

    Abstract

    CrRhAs was theoretically proposed to be a kagome metal with unusual magnetic ground states; however, little is known about its magnetic structure and physical properties experimentally. Here, we present an experimental investigation of CrRhAs with ZrNiAl-type structure and a distorted Cr kagome lattice. CrRhAs is an antiferromagnet with TN=149K. Powder neutron diffraction analysis reveals a noncollinear antiferromagnetic structure with propagation vector k=(1/3,1/3,1/2), which features a ferromagnetic second nearest neighbor coupling in the kagome plane that is different from the prediction in previous density functional theory calculations. Furthermore, CrRhAs exhibits anomalous electrical transport properties which are possibly related to multiband effects and strong spin fluctuations. For the temperature-dependent longitudinal resistivity ρxx, it is semiconductinglike above TN and becomes metallic below TN. The Hall coefficients exhibit two sign changes near 70 and 300 K. Combined with the results of heat capacity measurements, a large Kadowaki-Woods ratio α=33.9µΩcmmol2K2/J2 is obtained. The above results suggest CrRhAs is a strongly correlated kagome metal with multiband and noncollinear magnetic structure features.

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