Magnetic structures of rare earth intermetallic compounds RCuAs$_2$ (R = Pr, Nd, Tb, Dy, Ho, and Yb)
Y. Zhao, J. W. Lynn, Gohil S. Thakur, Zeba Haque, L. C. Gupta, and A K, Ganguli

TL;DR
This study investigates the magnetic structures of various rare earth intermetallic compounds RCuAs$_2$ using neutron scattering, revealing diverse magnetic orderings including commensurate and incommensurate structures with specific wave vectors and orientations.
Contribution
It provides detailed neutron scattering analysis of magnetic structures in RCuAs$_2$ compounds, highlighting the diversity of magnetic orderings and the influence of different rare earth elements.
Findings
PrCuAs$_2$ has commensurate magnetic order below 6.4 K.
NdCuAs$_2$ and DyCuAs$_2$ order below 3.54 K and 10.1 K with moments in the a-b plane.
TbCuAs$_2$ and HoCuAs$_2$ exhibit incommensurate magnetic structures with specific wave vectors.
Abstract
Neutron scattering studies have been carried out on polycrystalline samples of a series of rare earth intermetallic compounds RCuAs (R = Pr, Nd, Dy, Tb, Ho and Yb) as a function of temperature to determine the magnetic structures and the order parameters. These compounds crystallize in the ZrCuSi type structure, which is similar to that of the RFeAsO (space group P4/nmm) class of iron-based superconductors. PrCuAs develops commensurate magnetic order with K = (0, 0, 0.5) below T = 6.4 (2) K, with the ordered moments pointing along the c-axis. The irreducible representation analysis shows either a or representation. NdCuAs and DyCuAs order below T = 3.54(5) K and T = 10.1(2) K, respectively, with the same ordering wave vector but the moments lying in the a-b plane (with a or …
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