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Magnetic Flux-Trapping of Anisotropic-Grown Y-Ba-Cu-O Bulk Superconductors during and after Pulsed-Field Magnetizing Processes

机译:脉冲场磁化过程期间和之后各向异性生长的Y-BA-CU-o块体超导体的磁通量俘获

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The magnetic flux penetration into the melt-textured Y-Ba-Cu-O high temperature superconducting bulk magnets were precisely evaluated during and after the pulsed field magnetization processes operated at 30 K. The bulk magnets were carefully fabricated by the cold seeding method with use of a single and a pair of seed crystals composed of the Nd-Ba-Cu-O thin films. These seed crystals were put on the top surfaces of the precursors to let the large grains grow during the heat treatments. We observed the flux penetrations which occurred in the lower applied-field regions at around 3.1 T for the samples bearing the twin seeds than those of the single-seeded crystals at around 3.8 T. This means that the magnetic fluxes are capable of invading into the twin-seeded samples more easily than the single-seeds. It suggests that the anisotropic grain growths of parallel and normal to the rows of seed crystals affects the variations of J_c values with different distributions of the pinning centers, results in the preferential paths for the invading magnetic fluxes.
机译:在30k下操作的脉冲现场磁化过程期间和之后,精确评估熔体纹理的Y-Ba-Cu-O高温超导体磁铁中的磁通量渗透。通过使用的冷播种方法小心地制造散装磁体由Nd-Ba-Cu-O薄膜组成的单个和一对晶晶。将这些种子晶体放在前体的顶表面上,以使大颗粒在热处理期间生长。我们观察到在较低施加的场区域发生的磁通渗透在左右3.1℃,用于携带双种子的样品比3.8℃的单播晶体的样品。这意味着磁通量能够入侵比单种子更容易进行双种子样品。它表明,平行和正常到种子晶体行的各向异性晶粒生长影响了钉扎中心的不同分布的J_C值的变化,导致入侵磁通量的优先路径。

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