English

Hybridization effects and multipole orders in Pr skutterudites

Strongly Correlated Electrons 2009-11-11 v1

Abstract

Theoretical account is given of 4f-electron dynamics and multipole orders in Pr skutterudites with particular attention to (i) mechanism of the crystalline electric field (CEF) splitting leading to a pseudo-quartet ground state;(ii) Kondo effect due to exchange interactions involving the pseudo-quartet;(iii) multipole orders in the lattice of the pseudo-quartet in magnetic field.Competition between the point-charge interaction andhybridization between 4f and conduction electrons is identified as the key for controlling the CEF splitting. It is found that one of two pseudo-spins forming the pseudo-quartet has a ferromagnetic exchange, while the other has an antiferromagnetic exchange with conduction electrons. The Kondo effect is clearly seen in the resistivity calculated by the NCA, provided the low-lying triplet above the singlet is mainly composed of the Γ4\Gamma_4-type wave functions.If the weight of the Γ5\Gamma_5-type is large in the triplet, the Kondo effect does not appear.This difference caused by the nature of the triplet explains the presence of the Kondo effect inPrFe4_4P12_{12}, and its absence in PrOs4_4Sb12_{12}.By taking the minimal model with antiferro-quadrupole (AFQ) and ferro-type intersite interactions for dipoles and octupoles between nearest-neighbors,the mean-field theory reproduces the overall feature of the multiple ordered phases in PrFe4_4P12_{12}. The AFQ order with the Γ3\Gamma_3-type symmetry is found to be stable only as a mixture of O20O_2^0 and O22O_2^2 components.

Keywords

Cite

@article{arxiv.cond-mat/0506788,
  title  = {Hybridization effects and multipole orders in Pr skutterudites},
  author = {Y. Kuramoto and J. Otsuki and A. Kiss and H. Kusunose},
  journal= {arXiv preprint arXiv:cond-mat/0506788},
  year   = {2009}
}

Comments

21 pages, to be published in proc. YKIS2004

R2 v1 2026-07-22T11:19:15.119Z