Antiferromagnetic Order and Possible Quantum Spin Liquid in Kagome Antiferromagnet LuCu3(OH)6Br2Brx(OH)1–x
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Abstract
Abstract Recent studies on the kagome lattice YCu3(OH)6+xX3−x (X = Cl, Br) have provided promising evidence for the existence of Dirac quantum spin liquids. In this study, we synthesized a new compound, LuCu3(OH)6Br2Brx(OH)1−x, which has two types of structures with two different space groups, and . The type-I sample with a space group of had undistorted Cu2+ kagome planes and orders magnetically below approximately 1.5 K. The type-II sample had a larger unit cell with a space group of and distorted kagome planes. No magnetic ordering was observed, and the low-temperature specific heat behaved like a Dirac quantum spin liquid, including a quadratic temperature dependence at zero field and an additional linear T term under magnetic fields. By comparing the structures with those of YCu3(OH)6+xX3−x (X = Cl, Br), we show that the quantum spin liquid ground state may have a deep connection with the J⎔-J-J′ Heisenberg model in the kagome lattice.
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Zezhong Li, Lankun Han, Yili Sun, Shanshan Zhang, Zhenyuan Zeng, Shiliang Li. Antiferromagnetic Order and Possible Quantum Spin Liquid in Kagome Antiferromagnet LuCu3(OH)6Br2[Brx(OH)1–x][J]. Chin. Phys. Lett., 2025, 42(2): 027504. DOI: 10.1088/0256-307X/42/2/027504
Zezhong Li, Lankun Han, Yili Sun, Shanshan Zhang, Zhenyuan Zeng, Shiliang Li. Antiferromagnetic Order and Possible Quantum Spin Liquid in Kagome Antiferromagnet LuCu3(OH)6Br2[Brx(OH)1–x][J]. Chin. Phys. Lett., 2025, 42(2): 027504. DOI: 10.1088/0256-307X/42/2/027504
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Zezhong Li, Lankun Han, Yili Sun, Shanshan Zhang, Zhenyuan Zeng, Shiliang Li. Antiferromagnetic Order and Possible Quantum Spin Liquid in Kagome Antiferromagnet LuCu3(OH)6Br2[Brx(OH)1–x][J]. Chin. Phys. Lett., 2025, 42(2): 027504. DOI: 10.1088/0256-307X/42/2/027504
Zezhong Li, Lankun Han, Yili Sun, Shanshan Zhang, Zhenyuan Zeng, Shiliang Li. Antiferromagnetic Order and Possible Quantum Spin Liquid in Kagome Antiferromagnet LuCu3(OH)6Br2[Brx(OH)1–x][J]. Chin. Phys. Lett., 2025, 42(2): 027504. DOI: 10.1088/0256-307X/42/2/027504
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