Low-field magnetic anomalies in single crystals of the A-type square-lattice antiferromagnet EuGa
arXiv:2209.14776 · doi:10.1103/PhysRevB.107.024421
Abstract
The body-centered-tetragonal antiferromagnet EuGa was recently identified as a Weyl nodal-line semimetal that exhibits the topological Hall effect below its reported antiferromagnetic (AFM) ordering temperature -16.5 K which we find to be K. The Eu ions are located at the corners and body center of the unit cell. EuGa exhibits A-type AFM order below , where the Eu spin-7/2 moments are ferromagnetically aligned in the plane with the Eu moments in adjacent Eu planes along the axis aligned antiferromagnetically. Low-field magnetization versus field data at K with the field aligned in the plane are reported that exhibit anomalous positive curvature up to a critical field at which a second-order transition occurs with kOe for and kOe for . For larger fields, a linear behavior is followed until the previously-reported critical field kOe is reached at which all moments become aligned with the applied field. A theory is formulated for K that fits the observed behavior at K well, where domains of A-type AFM order with fourfold rotational symmetry occur in the AFM state in zero field. The moments in the four domains reorient to become almost perpendicular to at , followed by increasing canting of all moments toward the field with increasing field up to . A first-order transition in at is predicted by the theory for K when is at a small angle from the [1,0,0] or [1,1,0] directions.
11 pages, 12 figures. Typographical errors corrected, additional analysis given
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