Triple-gap superconductivity of MgB2 - (La,Sr)MnO3 composite. Which of the gaps is proximity induced?
arXiv:1110.3960 · doi:10.1103/PhysRevB.86.104502
Abstract
Interplay of superconductivity and magnetism in a composite prepared of the ferromagnetic half-metallic La_0.67Sr_0.33MnO (LSMO) nanoparticles and the conventional s-wave superconductor MgB_2 has been studied. A few principal effects have been found in bulk samples. With an onset of the MgB_2 superconductivity, a spectacular drop of the sample resistance has been detected and superconductivity has been observed at temperature up to 20K. Point-contact (PC) spectroscopy has been used to measure directly the superconducting energy coupling. For small voltage, an excess current and doubling of the PC's normal state conductance have been found. Conductance peaks corresponding to three energy gaps are clearly observed. Two of these gaps we identified as enhanced Δ_π and Δ_σ gaps originating from the MgB_2; the third gap Δ_{tr} is more than three times larger than the largest MgB_2 gap. The experimental results provide unambiguous evidences for a new type of proximity effect which follows the phase coherency scenario of proximity induced superconductivity. Specifically, at low temperature, the p-wave spin-triplet condensate with pairing energy Δ_{tr} is essentially sustained in LSMO but is incapable to display long-range supercurrent response because of a phase-disordering state. The proximity coupling to MgB_2 restores the long-range phase coherency of the triplet superconducting state, which, in turn, enhances superconducting state of the MgB_2.
10 pages, 6 figures
References in corpus (11)
- A spin triplet supercurrent through the half-metallic ferromagnet CrO2
- Temporal correlations of superconductivity above the transition temperature in LaSrCuO probed by terahertz spectroscopy
- Optimization of spin-triplet supercurrent in ferromagnetic Josephson junctions
- A route to high temperature superconductivity in composite systems
- Electronic structure of charge-ordered Fe3O4 from calculated optical, megneto-optical Kerr effect, and O K-edge x-ray absorption spectra
- Superconducting phase fluctuations in SmFeAsOF from diamagnetism at low magnetic field above
- Giant proximity effect in a phase-fluctuating superconductor
- Effective spin-flip scattering in diffusive superconducting proximity systems with magnetic disorder
- Enhanced low field magnetoresistance of Fe3O4 nano-sphere compact
- The diamagnetism above the superconducting transition in underdoped La(1.9)Sr(0.1)CuO(4) revisited: Chemical disorder or phase incoherent superconductivity?
- Dephasing in disordered metals with superconductive grains