Ce-based heavy-fermion superconductors (HFSC) exhibit magnetic phase diagrams differing from those of both the ideal Kondo lattice and substitutional alloys with intact Ce sublattice. While for the Ce-based HFSC (with well localized 4f shell) superconductivity and antiferromagnetic order seem to compete with each other, both phenomena typically coexist for U-based HFSC (with less localized 5f shell)
The Cooper pairs in the superconductors CeCu 2Si 2, UBe 13, UPt 3, and URu 2Si 2 are formed by quasi...
Heavy-fermion compounds are ideally suited to study cooperative phenomena in highly correlated elect...
Ce115 and related Ce compounds are particularly suited to detailed studies of the interplay of antif...
Ce-based heavy-fermion superconductors (HFSC) exhibit magnetic phase diagrams differing from those o...
Ce-based heavy-fermion (HF) metals behave as Kondo-lattice systems and can be classified with the ai...
Ce-based heavy-fermion (HF) metals behave as Kondo-lattice systems and can be classified with the ai...
Magnetic phase diagrams have been explored in heavy-fermion (HF) compounds by controlled changes of ...
Superconductivity in lanthanide-and actinide-based heavy-fermion (HF) metals can have different micr...
Superconductivity in lanthanide-and actinide-based heavy-fermion (HF) metals can have different micr...
This article overviews the development of heavy-fermion superconductivity, notably in such rare-eart...
Local heavy fermions are formed at the sites of independent Kondo ions as substantiated by the disco...
Local heavy fermions are formed at the sites of independent Kondo ions as substantiated by the disco...
International audienceA brief review on major advances in heavy fermion physics is presented includi...
International audienceA brief review on major advances in heavy fermion physics is presented includi...
International audienceA brief review on major advances in heavy fermion physics is presented includi...
The Cooper pairs in the superconductors CeCu 2Si 2, UBe 13, UPt 3, and URu 2Si 2 are formed by quasi...
Heavy-fermion compounds are ideally suited to study cooperative phenomena in highly correlated elect...
Ce115 and related Ce compounds are particularly suited to detailed studies of the interplay of antif...
Ce-based heavy-fermion superconductors (HFSC) exhibit magnetic phase diagrams differing from those o...
Ce-based heavy-fermion (HF) metals behave as Kondo-lattice systems and can be classified with the ai...
Ce-based heavy-fermion (HF) metals behave as Kondo-lattice systems and can be classified with the ai...
Magnetic phase diagrams have been explored in heavy-fermion (HF) compounds by controlled changes of ...
Superconductivity in lanthanide-and actinide-based heavy-fermion (HF) metals can have different micr...
Superconductivity in lanthanide-and actinide-based heavy-fermion (HF) metals can have different micr...
This article overviews the development of heavy-fermion superconductivity, notably in such rare-eart...
Local heavy fermions are formed at the sites of independent Kondo ions as substantiated by the disco...
Local heavy fermions are formed at the sites of independent Kondo ions as substantiated by the disco...
International audienceA brief review on major advances in heavy fermion physics is presented includi...
International audienceA brief review on major advances in heavy fermion physics is presented includi...
International audienceA brief review on major advances in heavy fermion physics is presented includi...
The Cooper pairs in the superconductors CeCu 2Si 2, UBe 13, UPt 3, and URu 2Si 2 are formed by quasi...
Heavy-fermion compounds are ideally suited to study cooperative phenomena in highly correlated elect...
Ce115 and related Ce compounds are particularly suited to detailed studies of the interplay of antif...