English

Electronic and magnetic properties of quasi-skutterudite PrCo$_2$Ga$_8$ compound

Strongly Correlated Electrons 2019-04-02 v1

Abstract

PrCo2_2Ga8_8 is an orthorhombic quasi-skutterudite type compound which crystallizes in the CaCo2_2Al8_8 structure type, with space group PbamPbam (No. 55). The Pr3+^{3+} ion has a site symmetry of CsC_s which predicts a crystal electric field (CEF) level splitting into 9 singlets for JJ = 4. However, a phase transition at TmT_m = 1.28~K is observed in electrical resistivity and specific heat results and is reported in this paper. The electrical resistivity shows an upturn below TmT_m due to the superzone-gap formation. This transition is tuneable in fields and is suppressed to lower temperatures with applied magnetic fields. The electronic specific heat Cp(T)/TC_{p}(T)/T increases below TmT_m and reaches a value of 7.37 J/(mol K2^2) at 0.4~K. The Sommerfeld coefficient, γ\gamma extracted from the low temperature analysis of C4f(T)/TC_\mathrm{4f}(T)/T is 637 mJ/(mol K2^2) indicating a possible mass enhancement of the quasiparticles. The calculated entropy value of 3.05 J/(mol K) is recovered around TmT_m exhibiting almost 53% of Rln2, where R is the universal gas constant. Magnetic susceptibility results obeys the Curie-Weiss law for data above 100 K with an estimated effective magnetic moment, μeff\mu_\mathrm{eff} = 3.37 μB\mu_B/Pr and Weiss temperature, θp\theta_p = -124 K.

Keywords

Cite

@article{arxiv.1904.00064,
  title  = {Electronic and magnetic properties of quasi-skutterudite PrCo$_2$Ga$_8$ compound},
  author = {Michael O. Ogunbunmi and Buyisiwe M. Sondezi and Harikrishnan S. Nair and André M. Strydom},
  journal= {arXiv preprint arXiv:1904.00064},
  year   = {2019}
}

Comments

11 pages, 5 figures, SCES 2017 conference proceedings