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Magnetic shielding properties of high- Tc superconducting hollow cylinders: model combining experimental data for axial and transverse magnetic field configurations

机译:高Tc超导空心圆柱体的磁屏蔽性能:结合轴向和横向磁场实验数据的模型

摘要

Magnetic shielding efficiency was measured on high- Tc superconducting hollow cylinders subjected to either an axial or a transverse magnetic field in a large range of field sweep rates, dBapp/dt. The behaviour of the superconductor was modelled in order to reproduce the main features of the field penetration curves by using a minimum number of free parameters suitable for both magnetic field orientations. The field penetration measurements were carried out on Pb-doped Bi-2223 tubes at 77 K by applying linearly increasing magnetic fields with a constant sweep rate ranging between 10 uT s[?]1 and 10 mT s[?]1 for both directions of the applied magnetic field. The experimental curves of the internal field versus the applied field, Bin(Bapp), show that, at a given sweep rate, the magnetic field for which the penetration occurs, Blim, is lower for the transverse configuration than for the axial configuration. A power law dependence with large exponent, n', is found between Blim and dBapp/dt. The values of n' are nearly the same for both configurations. We show that the main features of the curves Bin(Bapp) can be reproduced using a simple 2D model, based on the method of Brandt, involving a E(J) power law with an n-exponent and a field-dependent critical current density, Jc(B), (following the Kim model: Jc = Jc0(1+B/B1)[?]1). In particular, a linear relationship between the measured n'-exponents and the n-exponent of the E(J) power law is suggested by taking into account the field dependence of the critical current density. Differences between the axial and the transverse shielding properties can be simply attributed to demagnetizing fields.
机译:在高Tc超导空心圆柱体上在大范围的场扫描速率dBapp / dt中经受轴向或横向磁场的情况下,测量了磁屏蔽效率。对超导体的行为进行了建模,以通过使用适用于两个磁场方向的最少数量的自由参数来重现场穿透曲线的主要特征。磁场穿透测量是在77 K下对掺Pb的Bi-2223管进行的,方法是在两个方向上施加线性增加的磁场,且恒定扫描速率在10 uT s [?] 1和10 mT s [?] 1之间。施加的磁场。内部磁场与外加磁场Bin(Bapp)的实验曲线表明,在给定的扫描速率下,横向配置的穿透磁场Blim小于轴向配置。在Blim和dBapp / dt之间发现了幂指数与n'大的幂律相关性。两种配置的n'值几乎相同。我们表明,可以使用基于Brandt方法的简单2D模型来再现曲线Bin(Bapp)的主要特征,该模型涉及具有n指数和与场有关的临界电流密度的E(J)幂定律Jc(B),(根据Kim模型:Jc = Jc0(1 + B / B1)[?] 1)。特别地,通过考虑临界电流密度的场相关性,提出了所测量的n'指数和E(J)幂律的n指数之间的线性关系。轴向和横向屏蔽特性之间的差异可以简单地归因于退磁场。

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