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首页> 外文期刊>Scientific reports. >Reconfigurable superconducting vortex pinning potential for magnetic disks in hybrid structures
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Reconfigurable superconducting vortex pinning potential for magnetic disks in hybrid structures

机译:混合结构中的磁盘可重新配置的超导涡旋钉扎电位

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摘要

High resolution scanning Hall probe microscopy has been used to directly visualise the superconducting vortex behavior in hybrid structures consisting of a square array of micrometer-sized Py ferromagnetic disks covered by a superconducting Nb thin film. At remanence the disks exist in almost fully flux-closed magnetic vortex states, but the observed cloverleaf-like stray fields indicate the presence of weak in-plane anisotropy. Micromagnetic simulations suggest that the most likely origin is an unintentional shape anisotropy. We have studied the pinning of added free superconducting vortices as a function of the magnetisation state of the disks, and identified a range of different phenomena arising from competing energy contributions. We have also observed clear differences in the pinning landscape when the superconductor and the ferromagnet are electron ically coupled or insulated by a thin dielectric layer, with an indication of non-trivial vortex-vortex interactions. We demonstrate a complete reconfiguration of the vortex pinning potential when the magnetisation of the disks evolves from the vortex-like state to an onion-like one under an in-plane magnetic field. Our results are in good qualitative agreement with theoretical predictions and could form the basis of novel superconducting devices based on reconfigurable vortex pinning sites.
机译:高分辨率扫描厅探针显微镜已经用于直接可视化混合结构中的超导涡流行为,其由由超导Nb薄膜覆盖的微米尺寸的Py铁磁盘的方形阵列组成。剩磁以几乎完全磁通磁性涡旋状态存在,但观察到的三叶草样杂散场表示存在弱面内各向异性。微磁性模拟表明,最可能的起源是一种无意的形状各向异性。我们已经研究了作为盘的磁化状态的函数的添加自由超导涡旋的钉扎,并确定了竞争能源贡献产生的一系列不同现象。当超导体和铁磁性被薄介电层的电子耦合或绝缘时,我们还观察到钉扎景观的明显差异,具有非透视涡流相互作用的指示。当磁盘的磁化从涡流状状态从面内磁场下的洋葱状磁场演示时,我们证明了涡流固定电位的完全重新配置。我们的结果与理论预测良好的定性协议,可以基于可重新配置的涡旋钉扎网站的新型超导装置的基础。

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