English

Magnetic Order and Competition With Superconductivity in (Er-Ho)Ni$_{2}$B$_{2}$C

Superconductivity 2020-08-12 v2 Strongly Correlated Electrons

Abstract

The rare earth magnetic order in pure and doped Er(1x)_{(1-x)}Hox_{x}Ni2_2B2_2C (x~=~0,~0.25,~0.50,~0.75,~1) single crystal samples was investigated using magnetization and neutron diffraction measurements. Superconducting quaternary borocarbides, RRNi2_2B2_2C where R~=~Er, Ho , are both magnetic intermetallic superconductors with the transition temperatures \sim 10 K. These compounds also develop magnetic order in the vicinity of this temperature. Depending on the rare earth composition the coupling between superconductivity and magnetism creates several phases, ranging from a reentrant superconductor with a mixture of commensurate and incommensurate antiferromagnetism to a total incommensurate antiferromagnetic spin modulation with a weak ferromagnetic state. All of these phases coexist with superconductivity. RKKY magnetic interactions are used to describe the magnetic orders in the pure compounds. However, the doping of Ho on Er (or Er on Ho) sites which have two strong magnetic moments with two different easy directions creates new and complicated magnetic modulations with possible local disorder effects. One fascinating effect is the development of an induced magnetic state resembling the pure and doped R2R_2CuO4_4, R~=~Nd and Pr.

Keywords

Cite

@article{arxiv.2008.03743,
  title  = {Magnetic Order and Competition With Superconductivity in (Er-Ho)Ni$_{2}$B$_{2}$C},
  author = {Suleyman Gundogdu and J. Patrick Clancy and Guangyong Xu and Yang Zhao and Paul A. Dube and Tufan C. Karalar and Beong Ki Cho and Jeffrey W. Lynn and M. Ramazanoglu},
  journal= {arXiv preprint arXiv:2008.03743},
  year   = {2020}
}

Comments

8 pages, 4 figures , Research Article