English

Magnetic properties of AlB$_2$-type holmium silicides and germanides

Strongly Correlated Electrons 2024-07-26 v1 Materials Science

Abstract

Discovery of the large magnetocaloric effect in HoB2_2 has highlighted the practical advantage of heavy rare-earth ions. Other holmium compounds are of interest, and we here report the synthesis and the magnetic properties of HoSi1.67_{1.67} and HoGe1.67_{1.67} which form the same AlB2_2-type structure but with vacancies. They are found to show the antiferromagnetic order with the Neel temperature 17.6(2)K for HoSi1.67_{1.67} and 9.9(2)K for HoGe1.67_{1.67}, and the magnetic entropy changes at the temperature are 0.05(1)J/cm3^3K for HoSi1.67_{1.67} and 0.08(1)J/cm3^3K for HoGe1.67_{1.67}. Magnetic orders were suppressed by replacing vacancies with nickel, resulting in an increase of magnetic entropy changes. Distance between the in-plane Ho3+^{3+} ions appears to be an important parameter leading to the transition between the antiferromagnetic (HoSi1.67_{1.67}) and the ferromagnetic (HoB2_2) order. The finding may aid the exploration of other heavy rare-earth compounds for similar applications.

Keywords

Cite

@article{arxiv.2407.17830,
  title  = {Magnetic properties of AlB$_2$-type holmium silicides and germanides},
  author = {G. Eguchi and R. Matsumoto and K. Terashima and Y. Takano},
  journal= {arXiv preprint arXiv:2407.17830},
  year   = {2024}
}

Comments

18 pages, 6 figures, 2 tables