English

Evolution of non-Kramers Doublets in Magnetic Field PrNi$_2$Cd$_{20}$ and PrPd$_2$Cd$_{20}$

Strongly Correlated Electrons 2021-12-02 v3

Abstract

Praseodymium-based 1-2-20 cage compounds PrT2X20T_2X_{20} (TT is generally Ti, V, Nb, Ru, Rh, Ir; and XX is either Al, Zn or Cd) provide yet another platform to study non-trivial electronic states of matter ranging from topological and magnetic orders to unconventional multipolar orders and superconductivity. In this paper, we report measurements of the electronic heat capacity in two Pr-based 1-2-20 materials: PrNi2_2Cd20_{20} and PrPd2_2Cd20_{20}. We find that the lowest energy multiplet of the Pr 4f24f^2 valence configuration is a Γ3\Gamma_3 non-Kramers doublet and the first excited triplet is assumed to be a magnetic Γ5\Gamma_5. By analyzing the dependence of the energy splitting between the ground and first excited singlet states on external magnetic field, we found that the maximum in the heat capacity corresponding to the Schottky anomaly in PrPd2_2Cd20_{20}, unlike PrNi2_2Cd20_{20}, shows pronounced linear dependence on external magnetic field at higher field values. This effect is associated with the exchange interactions between the field-induced magnetic dipole moments.

Keywords

Cite

@article{arxiv.2005.09074,
  title  = {Evolution of non-Kramers Doublets in Magnetic Field PrNi$_2$Cd$_{20}$ and PrPd$_2$Cd$_{20}$},
  author = {A. M. Konic and R. B. Adhikari and D. L. Kunwar and A. A. Kirmani and A. Breindel and R. Sheng and M. B. Maple and M. Dzero and C. C. Almasan},
  journal= {arXiv preprint arXiv:2005.09074},
  year   = {2021}
}