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首页> 外文期刊>Superconductor Science & Technology >Field penetration into hard type-II superconducting tubes: effects of a cap, a non-superconducting joint, and non-uniform superconducting properties
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Field penetration into hard type-II superconducting tubes: effects of a cap, a non-superconducting joint, and non-uniform superconducting properties

机译:场穿透到II型硬质超导管中:帽,非超导接头和非均匀超导特性的影响

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摘要

Using the numerical method of Brandt (1998 Phys. Rev. B 58 6506), we study the penetration of a uniform magnetic field that is gradually applied parallel to the axis of finite type-II superconducting tubular samples with strong pinning. This study is carried out in view of designing low-frequency magnetic shields by exploiting the diamagnetic properties of type-II superconductors. First, we compare the field penetration into open and closed tubes. For long tubes (length larger than three times the outer diameter), we show that a cap weakly affects the maximum magnetic induction that can be shielded, but greatly increases the region over which the field is nearly uniform. When the length of the tube is shorter, both the maximum shieldable magnetic induction and the uniformity of the field attenuation are enhanced by closing the tube. We also show that making a hole in the cap, which is often necessary for applications, does not greatly affect the shielding properties provided the diameter of the hole is small compared to that of the tube (hole diameter smaller than a quarter of the outer tube diameter). In view of designing large size magnetic shields, superconducting tubes of finite size need to be joined together. We therefore examine in a second part how the presence of a non-superconducting joint between the tubes affects the shielding efficiency. It is shown that the effect of a joint depends upon its position along the tube axis and strongly increases with its size. Third, we study how non-uniform superconducting properties affect the shielding capabilities.
机译:使用Brandt的数值方法(1998 Phys。Rev. B 58 6506),我们研究了均匀磁场的渗透,该磁场逐渐平行于具有强钉扎作用的有限II型超导管状样品的轴。开展本研究的目的是通过利用II型超导体的抗磁特性来设计低频磁屏蔽。首先,我们比较野外穿透到开放和封闭管道中的情况。对于长管(长度大于外径的三倍),我们显示了一个帽会弱地影响可以屏蔽的最大磁感应强度,但会大大增加磁场几乎均匀的区域。当管子的长度较短时,通过关闭管子,可屏蔽的最大磁感应强度和磁场衰减的均匀性都会增强。我们还表明,在盖上打孔(通常是应用程序所必需的)不会极大地影响屏蔽性能,只要孔的直径比管的直径小(孔的直径小于外管的四分之一)直径)。为了设计大尺寸的磁屏蔽,需要将有限尺寸的超导管连接在一起。因此,我们在第二部分中研究了管之间非超导接头的存在如何影响屏蔽效率。结果表明,接头的效果取决于其沿管轴的位置,并随着尺寸的增加而大大增加。第三,我们研究不均匀的超导特性如何影响屏蔽能力。

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