Evidence for Coexistence of Bulk Superconductivity and Itinerant Antiferromagnetism in the Heavy Fermion System CeCo(In1−xCdx)5

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作者
Ludovic Howald
Evelyn Stilp
Pierre Dalmas de Réotier
Alain Yaouanc
Stéphane Raymond
Cinthia Piamonteze
Gérard Lapertot
Christopher Baines
Hugo Keller
机构
[1] Physik-Institut der Universität Zürich,
[2] Swiss Light Source,undefined
[3] Paul Scherrer Institut,undefined
[4] Laboratory for Muon Spin Spectroscopy,undefined
[5] Paul Scherrer Institut,undefined
[6] Université Grenoble Alpes,undefined
[7] INAC-SPSMS,undefined
[8] F-38000 Grenoble,undefined
[9] France and CEA,undefined
[10] INAC-SPSMS,undefined
[11] Reliability Science and Technology Laboratory,undefined
[12] EMPA (Swiss Federal Laboratories for Materials Science and Technology) Dübendorf,undefined
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摘要
In the generic phase diagram of heavy fermion systems, tuning an external parameter such as hydrostatic or chemical pressure modifies the superconducting transition temperature. The superconducting phase forms a dome in the temperature—tuning parameter phase diagram, which is associated with a maximum of the superconducting pairing interaction. Proximity to antiferromagnetism suggests a relation between the disappearance of antiferromagnetic order and superconductivity. We combine muon spin rotation, neutron scattering and x-ray absorption spectroscopy techniques to gain access to the magnetic and electronic structure of CeCo(In1−xCdx)5 at different time scales. Different magnetic structures are obtained that indicate a magnetic order of itinerant character, coexisting with bulk superconductivity. The suppression of the antiferromagnetic order appears to be driven by a modification of the bandwidth/carrier concentration, implying that the electronic structure and consequently the interplay of superconductivity and magnetism is strongly affected by hydrostatic and chemical pressure.
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