English

Three-dimensional Sandglass Magnet with Non-Kramers ions

Strongly Correlated Electrons 2022-05-25 v3

Abstract

Magnetic susceptibility, specific heat, and muon spin relaxation (μ\muSR) measurements have been performed on a newly synthesized three-dimensional sandglass-type lattice Tm3_3SbO7_7, where two inequivalent sets of non-Kramers Tm3+^{3+} ions (Tm13+^{3+}_1 and Tm23+)^{3+}_2) show crystal electrical field effect at different temperature ranges. The existence of an ordered or a glassy state down to 0.1~K in zero field is excluded. The low-energy properties of Tm3_3SbO7_7 are dominated by the lowest non-Kramers quasi-doublet of Tm13+\rm Tm^{3+}_1, and the energy splitting is regarded as an intrinsic transverse field. Therefore, the low-temperature paramagnetic phenomenon in Tm3_3SbO7_7 is explained by a transverse field Ising model, which is supported by the quantitative simulation of specific heat data. In addition, the perturbation from Tm23+^{3+}_2 may play an important role in accounting for the low temperature spin dynamics behavior observed by μ\muSR.

Keywords

Cite

@article{arxiv.2201.09435,
  title  = {Three-dimensional Sandglass Magnet with Non-Kramers ions},
  author = {Yan-Xing Yang and Yao Wang and Zhao-Feng Ding and Adrian D. Hillier and Lei Shu},
  journal= {arXiv preprint arXiv:2201.09435},
  year   = {2022}
}