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Percolation effects in composites superconductor- ferromagnetic half- metal

机译:复合材料超导-铁磁半金属中的渗流效应

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We investigated transport characteristics of composite that consist of the superconductor MgB_2 and ferromagnetic half-metallic nanoparticles La_(0.7)Cao_(0.3)MnO_3 (LCMO). The experiments were carried out in a wide temperature range with different volume content of the magnetic impurity. It was found that over 25% of the impurity manganite breaches- percolation paths of the diboride magnesium. This leads to a considerable broadening of the MgB_2 superconducting transition and the formation of the network of contacts through the ferromagnetic inclusions. This result shows the possibility of the spin- activated surface realization on the superconductor-manganite boundary. It's allowing the free transition of Cooper pairs with s- wave symmetry of the order parameter in a ferromagnet with 100% spin-polarized carriers.
机译:我们研究了由超导体MgB_2和铁磁半金属纳米粒子La_(0.7)Cao_(0.3)MnO_3(LCMO)组成的复合材料的传输特性。实验是在宽范围的温度范围内进行的,其中磁性杂质的体积含量不同。已发现超过25%的杂质锰矿违反了二硼化镁的渗透路径。这导致MgB_2超导过渡的显着拓宽,并通过铁磁夹杂物形成接触网络。该结果表明在超导体-锰边界上实现自旋活化表面的可能性。它允许在具有100%自旋极化载流子的铁磁体中以阶跃参数的s波对称性实现Cooper对的自由跃迁。

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