首页> 外文期刊>Superconductor Science & Technology >Improvement of flux pinning performance at high magnetic fields in GdBa _2Cu _3O _y coated conductors with BHO nano-rods through enhancement of B _(c2)
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Improvement of flux pinning performance at high magnetic fields in GdBa _2Cu _3O _y coated conductors with BHO nano-rods through enhancement of B _(c2)

机译:通过增强B _(c2)改善带有BHO纳米棒的GdBa _2Cu _3O _y涂层导体中强磁场下的磁通钉扎性能

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摘要

Addition of BaHfO 3 (BHO) nano-rods as pinning centers into a GdBa _2Cu _3O _y (GdBCO) coated conductor dramatically improves the critical current properties in high magnetic fields. This is partly ascribed to the strong flux pinning of these pinning centers. In this paper it is reported that this improvement is mainly caused by unexpected enhancement of the upper critical field, B _c2. The mechanism of the enhancement of B _c2 is not yet clear, although the strain around the interface between the pinning center and the superconducting matrix or the interface itself may scatter electrons. This result suggests that the critical current property of REBa _2Cu _3O _y (RE: rare earth elements, REBCO) coated conductors could be designed not only by tailoring the microstructure of pinning centers but also by controlling the intrinsic superconducting property. Especially, the selection of pinning material and its content that determines B _c2 is expected to be a key problem for further improvement of the pinning performance at high magnetic fields.
机译:将BaHfO 3(BHO)纳米棒作为钉扎中心添加到GdBa _2Cu _3O _y(GdBCO)涂覆的导体中,可显着改善高磁场中的临界电流性能。这部分归因于这些钉扎中心的强磁通钉扎。在本文中,据报道,这种改善主要是由上临界场B _c2的意外增强引起的。尽管在钉扎中心与超导基质之间的界面周围的应变或界面本身可能使电子散射,但B _c2增强的机理尚不清楚。该结果表明,不仅可以通过调整钉扎中心的微观结构,而且可以通过控制固有的超导特性来设计REBa _2Cu _3O _y(RE:稀土元素,REBCO)涂层的导体的临界电流特性。特别地,期望确定B_c2的钉扎材料及其含量的选择是进一步改善高磁场下钉扎性能的关键问题。

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