Title of article :
NMR probe of magnetism and superconductivity in ruthenate oxides
Author/Authors :
Kitaoka، نويسنده , , Y and Ishida، نويسنده , , K and Mukuda، نويسنده , , H and Mao، نويسنده , , Z.Q and Ikeda، نويسنده , , S and Nishizaki، نويسنده , , S and Maeno، نويسنده , , Y and Kanno، نويسنده , , R and Takano، نويسنده , , M، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1999
Abstract :
We review recent NMR investigations on superconducting and magnetic properties in layered perovskite Sr2RuO4, isostructural to a high-Tc cuprate. Measurements of the Knight shift and the nuclear spin-lattice relaxation rate 1/T1 have identified its Cooper-pair spin state as a triplet and uncovered pronounced anisotropy in spin-fluctuation spectrum in Sr2RuO4. The in-plane low-frequency components of the dynamical susceptibility are exchange-enhanced with a weak q→ dependence associated with the two-dimensional (2D) character in electronic structure. By contrast, its out-of-plane component is unexpectedly enhanced by AF spin fluctuations upon cooling below T*∼130 K where the c-axis resistivity shows metallic behavior. We have found that the slightly-distorted cubic perovskite CaRuO3 is a nearly ferromagnetic metal dominated by ferromagnetic spin fluctuations with a Stoner factor α=0.98. Contrasting behavior of spin fluctuations between Sr2RuO4 and CaRuO3 is due to their different dimensionality in electronic structure with the closeness to ferromagnetism. We remark that a simple ferromagnetic-spin-fluctuation-mediated mechanism with analogy to 3He is not appropriate for an onset of spin-triplet p-wave superconductivity in Sr2RuO4. Alternately, we propose possible scenario that the in-plane local exchange interaction, which originates presumably from the Hund’s coupling between the 4dxy and 4dxz, yz orbitals, may play a role for the occurrence of spin-triplet p-wave superconductivity.
Keywords :
nuclear relaxation , CaRuO3 , Sr2RuO4 , Perovskite ruthenate oxides , P-Wave superconductivity , Two dimensional Fermi liquid , Spin fluctuations , Knight shift , Nearly ferromagnetic metal
Journal title :
MATERIALS SCIENCE & ENGINEERING: B
Journal title :
MATERIALS SCIENCE & ENGINEERING: B