English

Evolution of ferromagnetic and non-Fermi liquid state with doping:the case of Ru doped UCoGe

Strongly Correlated Electrons 2015-08-03 v3

Abstract

We have investigated the impact of Ru substitution for Co on the behavior of the ferromagnetic superconductor UCoGe by performing x-ray diffraction, magnetization, specific heat and electrical resistivity measurements on polycrystalline samples of the UCo1xRuxGe\mathrm{UCo}_{1-x}\mathrm{Ru}_{x}\mathrm{Ge} series (0x0.90\geq x\leq0.9). The initial Ru substitution up to x0.1x\approx0.1 leads to a simultaneous sharp increase of the Curie temperature and spontaneous magnetization up to maximum values of TC=8.6KT_{\mathrm{C}}=8.6 K and MS=0.1μBM_{\mathrm{S}}=0.1 \mu_{\mathrm{B}} per formula unit, respectively, whereas superconductivity vanishes already for x0.03x\approx0.03. Further increase of the Ru content beyond x0.1x\approx0.1 leads to a precipitous decrease of both, TCT_{\mathrm{C}} and MSM_{\mathrm{S}} towards a ferromagnetic quantum critical point (QCP) at xcr=0.31x_{\mathrm{cr}}=0.31. Consequently the TxT-x magnetic phase diagram consists of a well-developed ferromagnetic dome. We discuss the evolution of ferromagnetism with xx on the basis of band structure changes due to varying 5ff-ligand hybridization. This scenario is supported by the results of electronic structure calculations and consideration of the simplified periodic Anderson model. The analysis of the temperature dependencies of the electrical resistivity and heat capacity at low temperatures of the samples in the vicinity of the QCP reveals a non-Fermi liquid behavior and assigns the ferromagnetic quantum phase transition to be most likely of a continuous Hertz-Millis type.

Keywords

Cite

@article{arxiv.1412.8355,
  title  = {Evolution of ferromagnetic and non-Fermi liquid state with doping:the case of Ru doped UCoGe},
  author = {Michal Vališka and Jiří Pospíšil and Vladimír Sechovský and Martin Diviš and Mohsen M. Abd-Elmeguid},
  journal= {arXiv preprint arXiv:1412.8355},
  year   = {2015}
}

Comments

accepted for publication in PRB