Removing the spin ice cap: magnetic ground states of rare earth tripod kagome lattice Mg₂RE₃Sb₃O₁₄ (RE = Gd, Dy, Er)
Dun, Zhiling · Trinh, Jennifer · Li, Kuo · Lee, Minseong · Chen, Kuan-wen · Baumbach, Ryan · Hu, Yufei · Wang, Yingxia · Choi, Eun Sang · Shastry, B. Sriram · Ramirez, Arthur P. · Zhou, Haidong
الأصل · EN
We present the structural and magnetic properties of a new compound family, Mg₂RE₃Sb₃O₁₄ (RE = Gd, Dy, Er), with a hitherto unstudied frustrating lattice, the "tripod kagome" structure. Susceptibility (ac, dc) and specific heat exhibit features that are understood within a simple Luttinger-Tisza type theory. For RE = Gd, we found long ranged order (LRO) at 1.65 K, which is consistent with a 120 ∘ structure, demonstrating the importance of diople interactions for this 2D Heisenberg system. For RE = Dy, LRO at 0.37 K is related to the "kagome spin ice (KSI)" physics for a 2D system. This result shows that the tripod kagome structure accelerates the transition to LRO predicted for the related pyrochlore systems. For RE = Er, two transitions, at 80 mK and 2.1 K are observed, suggesting the importance of quantum fluctuations for this putative XY system.
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