Nanorod/superconductor composites were formed by depositing Tl2Ba2Ca2Cu3Oz (Tl-2223) thick films on high density MgO nanorod arrays that were grown on MgO single crystal substrates. Electron microscopy studies show that this approach creates a high density of columnar defects normal to the CuO2 planes within crystal grains of the composites. The nanorod/superconductor composites exhibited enhanced critical current densities and an upward shift in the irreversibility line compared with reference samples. These results demonstrate that a nanorod-composite approach represents an effective strategy for introducing correlated defects into high-Tc superconductors, and thus may be useful for applications.
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