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    Collinear spin density wave state in distorted square-lattice GdNiSn4

    Charles C. Tam1,*, Sarah Schwarz1, Xin Zhang2, Sudipta Chatterjee2, Scott B. Lee2, Rebecca Scatena3, Leslie M. Schoop2, and Stephen D. Wilson1,†

    • *Contact author: ctam@ucsb.edu
    • †Contact author: stephendwilson@ucsb.edu

    Phys. Rev. Materials 10, 074412 – Published 21 July, 2026

    DOI: https://doi.org/10.1103/2plq-5mql

    Abstract

    We characterize the magnetic ground state of the newly synthesized lanthanide intermetallic GdNiSn4 via resonant elastic x-ray scattering measurements. This compound forms distorted square nets of Gd that initially order magnetically below 23 K, followed by a lower-temperature transition at 16 K. Our scattering data identify the ground state order as a single-q incommensurate, collinear order that slides towards a commensurate wave vector above the 16 K transition. Magnetic symmetry analysis combined with azimuthal dependence resolves the ground state magnetic structure as a moment-modulated spin density wave state with Gd moments oriented parallel to the in-plane a-axis. We discuss connections between the observed magnetic order and electronic properties in this square-net compound.

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