Structural control of d-f interaction in the CeFe1−xRuxAsO system

The isovalent substitution effect of Ru in CeFe1−xRuxAsO (0 x 1) has been systematically studied by powder X-ray diffraction, electrical resistivity, magnetization, and specific heat measurements. The antiferromagnetic (AFM) ordering of both d and 4f electrons are suppressed upon Ru doping, followed...

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Published inEurophysics letters Vol. 99; no. 5
Main Authors Wang, Cao, Jiang, Hao, Luo, Yongkang, Feng, Chunmu, Li, Wenxian, Xu, Zhu'an, Cao, Guanghan, Kim, Jung Ho, Dou, Shixue
Format Journal Article
LanguageEnglish
Published EDP Sciences, IOP Publishing and Società Italiana di Fisica 01.09.2012
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Summary:The isovalent substitution effect of Ru in CeFe1−xRuxAsO (0 x 1) has been systematically studied by powder X-ray diffraction, electrical resistivity, magnetization, and specific heat measurements. The antiferromagnetic (AFM) ordering of both d and 4f electrons are suppressed upon Ru doping, followed by Pauli paramagnetism (d electrons) and local moment paramagnetism (4f electrons) with strong ferromagnetic fluctuation, respectively. Neither superconductivity above 2 K nor pronounced Kondo screening are observed in the substitution phase diagram. Combined with published results of the cerium-based quaternary compounds CeMXO(M = Fe, Ru; X = P, As), our data suggest that the end member CeRuAsO is on the verge of becoming an FM Kondo lattice. Meanwhile, the ground state of 4f electrons in the quaternary CeMXO system should be determined by both the interlayer d-f Kondo coupling (JKondo) and the intralayer Ruderman-Kittel-Kasuya-Yosida (RKKY) interaction (JRKKY ), which are both very sensitive to the change in crystal structure.
Bibliography:istex:577300A175525603699EAB21880A782D882D80CC
ark:/67375/80W-TC3CTMQ0-W
publisher-ID:epl14834
ISSN:0295-5075
1286-4854
DOI:10.1209/0295-5075/99/57009