English

Random magnetic anisotropy in a new compound $\mbox{Sm}_2\mbox{Ag}\mbox{Si}_3$

Strongly Correlated Electrons 2021-09-21 v1

Abstract

We report the experimental study on the structural and magnetic properties of a new ternary intermetallic compound Sm2AgSi3\mathrm{Sm_2AgSi_3}. The properties of the sample were investigated in detail by X-ray diffraction, dc-magnetization, and heat capacity measurements. The polycrystalline compound of Sm2AgSi3\mathrm{Sm_2AgSi_3} crystallizes in the ThSi2\mathrm{ThSi_2}-type tetragonal structure (space group I41/amd{I_{4_1}/amd}). The temperature-dependent dc-magnetization and heat capacity results demonstrate that the compound undergoes ferromagnetic behaviour with a Curie temperature (TCT_C) of 14 K. The large coercive field in hysteresis loops and the thermomagnetic irreversibility in the ferromagnetic region revealed that the compound exhibits a large magnetic anisotropy. The magnitude of the applied field and the coercivity obtained from the M-H loops corroborate with the thermomagnetic irreversibility in the magnetization data. The magnetic contribution of the heat capacity reveals a broad Schottky-type anomaly above TCT_C, due to the presence of the crystal electric field effect of Sm3+\mathrm{Sm^{3+}} in Sm2AgSi3\mathrm{Sm_2AgSi_3}.

Keywords

Cite

@article{arxiv.2109.09608,
  title  = {Random magnetic anisotropy in a new compound $\mbox{Sm}_2\mbox{Ag}\mbox{Si}_3$},
  author = {Baidyanath Sahu and R. Djoumessi Fobasso and Andre M. Strydom},
  journal= {arXiv preprint arXiv:2109.09608},
  year   = {2021}
}