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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Magnetic flux patterns in superconductors deposited on a lattice of magnetic dots: A magneto-optical imaging study
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Magnetic flux patterns in superconductors deposited on a lattice of magnetic dots: A magneto-optical imaging study

机译:沉积在磁点晶格上的超导体中的磁通量模式:磁光成像研究

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We investigate the flux penetration in Pb films, of different shapes, deposited on top of a periodic array of Co/Pt dots with perpendicular anisotropy by means of magnetization and magneto-optical measurements. A clear dependence of the critical current density on the magnetic state of the dots and their polarity with respect to the direction of the applied magnetic field is observed by both techniques. The magnetic state of the dots changes the flux penetration from smooth to channelling. Additionally, in the fully magnetized state, an anisotropic current distribution is observed in circular-shaped samples. The flux penetration is dominated by avalanches only for configurations which correspond to a high critical current, irrespective of its origin, be it low temperature, magnetization state of the dots, or angle between the lattice of dots and the edge of the sample.
机译:我们通过磁化和磁光测量研究了具有垂直各向异性的Co / Pt点的周期性阵列顶部沉积的不同形状的Pb膜中的磁通渗透。两种技术都可以观察到临界电流密度与点的磁态及其极性(相对于所施加磁场的方向)的明确关系。点的磁性状态将通量渗透率从平滑改变为通道化。另外,在完全磁化状态下,在圆形样品中观察到各向异性电流分布。不论是低温,点的磁化状态或点阵与样品边缘之间的角度如何,通量渗透仅由与高临界电流相对应的配置的雪崩决定,无论其起源如何。

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