Determination of the magnetic structure of Yb3Pt4: a k=0 local-moment antiferromagnet
Y. Janssen, M. S. Kim, K. S. Park, L. S. Wu, C. Marques, M. C., Bennett, Y. Chen, J. Li, Q. Huang, J .W. Lynn, and M. C. Aronson

TL;DR
This study used neutron diffraction to determine the magnetic structure of Yb3Pt4, revealing a k=0 antiferromagnetic order with localized Yb moments and a complex interplay of anisotropies influencing the magnetic orientation.
Contribution
The paper provides the first detailed neutron diffraction analysis of Yb3Pt4's magnetic structure, identifying a specific antiferromagnetic arrangement and clarifying the role of anisotropies in moment orientation.
Findings
Yb3Pt4 exhibits a k=0 antiferromagnetic structure.
Ordered Yb moments are approximately 0.81 μB at 1.4 K.
The magnetic moments are localized and influenced by crystal-electric field and anisotropic exchange.
Abstract
We have used neutron diffraction measurements to study the zero-field magnetic structure of the intermetallic compound Yb3Pt4, which was earlier found to order antiferromagnetically at the Neel temperature TN=2.4 K, and displays a field-driven quantum critical point at 1.6 T. In Yb3Pt4, the Yb moments sit on a single low-symmetry site in the rhombohedral lattice with space group R-3. The Yb ions form octahedra with edges that are twisted with respect to the hexagonal unit cell, a twisting that results in every Yb ion having exactly one Yb nearest neighbor. Below TN, we found new diffracted intensity due to a k=0 magnetic structure. This magnetic structure was compared to all symmetry-allowed magnetic structures, and was subsequently refined. The best fitting magnetic structure model is antiferromagnetic, and involves pairs of Yb nearest neighbors on which the moments point almost…
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