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    Magnetic excitations from the hexagonal spin clusters in the S=12 distorted honeycomb lattice antiferromagnet Cu2(pymca)3(ClO4)

    Masaaki Matsuda and Alexander I. Kolesnikov

    Zentaro Honda

    Tokuro Shimokawa

    Sho Inoue, Yasuo Narumi, and Masayuki Hagiwara

    • Graduate School of Science and Engineering, Saitama University, Sakura-ku, Saitama 338-8570, Japan

    Phys. Rev. B 111, 224430 – Published 30 June, 2025

    DOI: https://doi.org/10.1103/yj3j-tyfq

    Abstract

    Cu2(pymca)3(ClO4) (pymca: pyrimidine-2-carboxylate) consists of a slightly distorted honeycomb lattice of Cu2+ spins, which shows no long-range magnetic order down to 0.6 K. A magnetization study revealed 1/3 and 2/3 plateau phases [A. Okutani et al., J. Phys. Soc. Jpn. 88, 013703 (2019)], which is not expected for regular honeycomb antiferromagnets. Inelastic neutron scattering experiments were performed using a powder sample to investigate the exchange interactions of this material. The spin excitations from the singlet ground state to the first three triplet states, predicted from the antiferromagnetic hexagonal spin cluster interacting with 3.9 meV, were observed. Using the exact diagonalization methods, the intercluster coupling was estimated from the excitation peak width to be about 20% of the intracluster interaction, which is consistent with the previously reported value. Our exchange path model explains the anisotropic exchange interactions in the distorted honeycomb plane.

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