Isotropic Γ_6 Ground State in Caged Compound NdRu2Zn20
arXiv:1310.1664 · doi:10.7566/JPSJ.82.123708
Abstract
The magnetic susceptibility , the magnetization , and the specific heat were measured for the caged cubic compound NdRuZn at temperatures down to 0.5 K in the magnetic field along the three crystallographic principal axes, [100], [110], and [111]. The ferromagnetic phase transition was observed at the Curie temperature K in both the temperature dependence of and . Below , the magnetization curves show very weak magnetic anisotropy, and the curves in the fields along the three principal axes show no magnetic anisotropy both below and above . The easy direction of magnetization at 0.5 K changes from the [111] direction in 0 T to the [110] diretion in 7 T. We analyzed these characteristic behaviors theoretically taking into account the crystalline-electric-field energy, the magnetic exchange interaction, and the Zeeman energy. It was found that these features are originated from the isotropic ground state mixing with the magnetic excited state. The temperature and the magnetic field dependences of and are quantitatively well analyzed by this theoretical calculation.
5 pages, 6 figures
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- Simultaneous Superconducting and Antiferroquadrupolar Transitions in PrRhZn
- Enhancement of Curie temperature due to the coupling between Fe itinerant electrons and Dy localized electrons in DyFe2Zn20