Uniaxial stress effects on magnetic and electric properties of the ground state in a centrosymmetric magnetic skyrmion host GdPdSi
arXiv:2608.09680
Abstract
We investigate effects of uniaxial stress to magnetic orders and electrical resistivity of the centrosymmetric magnetic skyrmion compound GdPdSi, which has a hexagonal crystal structure composed of triangular lattice layers of magnetic Gd ions. This compound is known to exhibit the triple- magnetic skyrmion lattice phase with a giant topological Hall effect in the first field induced phase [T. Kurumaji . Science , 914-918 (2019)]. In contrast to the established picture of the field-induced phase, the ground state of this system still remains to be studied. Although previous studies reported the existence of the incommensurate magnetic modulations described by a magnetic modulation wave vector where and its equivalents, it is still unclear whether the magnetic structure is a single- structure or a multiple- structure. In the present study, we performed magnetization, resistivity and neutron diffraction measurements with a compressive uniaxial stress applied perpendicular to the axis. The observed data revealed that the system did not exhibit anisotropic magnetic and electric properties expected from a single- magnetic order, suggesting that the magnetic ground state of this system is a multi- magnetic order.
7 pages, 4 figures