English

Moment canting and domain effects in antiferromagnetic DyRh$_2$Si$_2$

Strongly Correlated Electrons 2023-07-05 v2 Materials Science

Abstract

A combined experimental and theoretical study of the layered antiferromagnetic compound DyRh2_2Si2_2 in the ThCr2_2Si2_2-type structure is presented. The heat capacity shows two transitions upon cooling, the first one at the N{\'e}el temperature TN=55KT_{\rm N}=55\,\rm K and a second one at TN2=12KT_{\rm N2}=12\,\rm K. Using magnetization measurements, we study the canting process of the Dy moments upon changing the temperature and can assign TN2T_{\rm N2} to the onset of the canting of the magnetic moments towards the [100][100] direction away from the cc axis. Furthermore, we found that the field dependence of the magnetization is highly anisotropic and shows a two-step process for H001H\parallel 001. We used a mean-field model to determine the crystalline electric field as well as the exchange interaction parameters. Our magnetization data together with the calculations reveal a moment orientation close to the [101][101] direction in the tetragonal structure at low temperatures and fields. Applying photoemission electron microscopy, we explore the (001) surface of the cleaved DyRh2_2Si2_2 single crystal and visualize Si- and Dy-terminated surfaces. Our results indicate that the Si-Rh-Si surface protects the deeper lying magnetically active Dy layers and is thus attractive for investigation of magnetic domains and their properties in the large family of LnT2_2Si2_2 materials.

Keywords

Cite

@article{arxiv.2304.08607,
  title  = {Moment canting and domain effects in antiferromagnetic DyRh$_2$Si$_2$},
  author = {Kristin Kliemt and Michelle Ocker and Sarah Krebber and Susanne Schulz and Denis V. Vyalikh and Cornelius Krellner and Dmitry Yu. Usachov},
  journal= {arXiv preprint arXiv:2304.08607},
  year   = {2023}
}