paper

Synthesis and anisotropic magnetism of singlecrystalline GdPt2Si2

arXiv:2506.12170

Abstract

Single crystals of GdPtSi were grown using the Sn flux method, crystallizing in the CaBeGe-type tetragonal structure with space group . Electrical resistivity, specific heat, and magnetization data revealed the presence of a double magnetic transition with ~K and ~K. Analysis of the specific heat data suggest amplitude-modulated and equal-moment antiferromagnetic orderings, respectively. Field-induced magnetization and magnetic susceptibility data show a metamagnetic transition in the direction at 2~K, as well as the suppression of the magnetic transition located at with increasing external magnetic field. Electron Spin Resonance (ESR) shows the Gd resonance followed by a small second resonance. Peak-to-peak linewidth () analysis reveals slight broadening at ~K, indicating an increase in magnetic fluctuations at high temperatures. Ferromagnetic (FM) local polarization at high temperatures is also observed through the -factor analysis, which shows a notable positive shift (). Our results establish the fundamental physical properties of this material to aid in further understanding of the magnetism in the RPtSi series and related non-centrosymmetric systems.

16 pages, 7 figures, accepted in Physica B (2025)