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Research Article Open access CC BY 4.0

Magnetic Properties of a Quasi-two-dimensional Heisenberg Antiferromagnet α -RbCrF4

Yoko Miura, Ryota Sueyoshi, Hirotaka Manaka

Physical Science International Journal · pp. 1–8 · Published 9 Jul 2016

10.9734/PSIJ/2016/27184

Abstract

We synthesized a quasi-two-dimensional Heisenberg antiferromagnet on a square lattice formed in α -RbCrF4 by improving the pretreatment method before primary sintering. From X-ray diffraction measurements, the crystal structure was found to consist of a TlAlF4-type structure, which shows a good two-dimensionality. But the splitting of the fundamental peak indicating a superstructure in the ab-plane appeared. Temperature dependence of magnetic susceptibility shows a broad peak, which indicates typical low-dimensional antiferromagnets, at Tmax ≈ 47K . Furthermore, a sharp peak which indicates an antiferromagnetic phase transition also appeared at TN = 29.3(2) K. Following several previous theoretical investigations, we estimated intra-layer (Jintra) and inter-layer (Jinter) exchange interactions to be Jintra/ KB = -6.6(1) K  and Jinter / Jintra ≈ 0.05 , respectively. As a result, we found that α -RbCrF4 is a quasi-two-dimensional Heisenberg antiferromagnet.

Quasi-two-dimensional magnet X-ray diffraction magnetic susceptibility α -RbCrF4

Cited by 1

Substitution Effects on Magnetic Ground States with Geometrical Spin Frustration in Triangular Spin Tubes Formed in CsCrF4 and α-KCrF4

Hirotaka Manaka, Hideki Morita, Takuei Akasaka · Journal of the Physical Society of Japan · 2019

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