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Enhanced flux pinning in YBCO multilayer films with BCO nanodots and segmented BZO nanorods

机译:在具有BCO纳米点和分段BZO纳米棒的YBCO多层膜中增强的通量钉扎

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摘要

The flux pinning properties of the high temperature superconductor YBa2Cu3O7-d (YBCO) have been conventionally improved by creating both columnar and dot-like pinning centres into the YBCO matrix. To study the effects of differently doped multilayer structures on pinning, several samples consisting of a multiple number of individually BaZrO3 (BZO) and BaCeO3 (BCO) doped YBCO layers were fabricated. In the YBCO matrix, BZO forms columnar and BCO dot-like defects. The multilayer structure improves pinning capability throughout the whole angular range, giving rise to a high critical current density, J(c). However, the BZO doped monolayer reference still has the most isotropic J(c). Even though BZO forms nanorods, in this work the samples with multiple thin layers do not exhibit a c axis peak in the angular dependence of J(c). The angular dependencies and the approximately correct magnitude of J(c) were also verified using a molecular dynamics simulation.
机译:高温超导体YBa2Cu3O7-d(YBCO)的磁通钉扎特性通常通过在YBCO矩阵中创建圆柱状和点状钉扎中心来改善。为了研究不同掺杂的多层结构对钉扎的影响,制备了多个由多个分别掺杂BaZrO3(BZO)和BaCeO3(BCO)掺杂的YBCO层组成的样品。在YBCO矩阵中,BZO形成柱状和BCO点状缺陷。多层结构改善了整个角度范围内的钉扎能力,从而提高了临界电流密度J(c)。但是,BZO掺杂的单层参考仍然具有最大的各向同性J(c)。即使BZO形成纳米棒,在这项工作中,具有多个薄层的样品在J(c)的角度依赖性中也不会显示c轴峰值。还使用分子动力学模拟验证了角度依赖性和J(c)的近似正确大小。

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