Flux pinning and the paramagnetic meissner effect in MgB2 with TiO2 inclusions

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Abstract

The mixed-state superconducting properties of bulk MgB2+2at. %TiO2, prepared by the insitu solid state reaction, have been investigated. The high-resolution transmission electron microscopy study reveals that the sample has combined microstructures, consisting of regions with small-and large-size MgB2 grains, and the MgO inclusions. The particular grains are separated by thin TiB2 interlayers along the c axis. Analysis on the mixed-state parameters, such as the upper critical field, the coherence length and the Ginzburg-Landau parameter κ, proves that the MgB2+2at.%TiO2 belongs to a high-κ type-II superconductor in the dirty limit. The non-uniformly scaled microstructure results in an unusual (close to the double peak) magnetic field dependence of the pinning force density. The field-cooled temperature dependence of magnetic moment exhibits a transition of the sample to the paramagnetic state at certain applied magnetic fields, which is treated as a manifestation of the paramagnetic Meissner effect. The experimental results are discussed on the basis of modern theoretical approaches. © 2009 IOP Publishing Ltd.

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Prokhorov, V. G., Svetchnikov, V. L., Park, J. S., Kim, G. H., Lee, Y. P., Kang, J. H., … Mikheenko, P. (2009). Flux pinning and the paramagnetic meissner effect in MgB2 with TiO2 inclusions. Superconductor Science and Technology, 22(4). https://doi.org/10.1088/0953-2048/22/4/045027

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