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首页> 外文期刊>Physical Review, B. Condensed Matter >Meissner holes and turbulent structures in superconductors in unidirectional and rotating fields
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Meissner holes and turbulent structures in superconductors in unidirectional and rotating fields

机译:单向和旋转场中超导体的Meissner孔和湍流结构

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摘要

Flux distributions on different faces of YBCO crystal plates remagnetized by unidirectional and rotating fields are studied using advanced magneto-optical techniques. Bending of vortex lines is shown to be crucial for the remagnetization process even in plates with large width to thickness ratios in in-plane fields. Closed vortex loops smaller than a critical radius collapse, forming a Aux-free cylinder: the Meissner hole. This results in the collection of superconducting currents into cords along the Meissner holes and the formation of turbulent flux patterns. Similar structures and unusual patterns are found when the field is rotated in the basal or end face plane. Values of the currents in the structures are retrieved from fits of measured Aux profiles by model current distributions. The remagnetization patterns revealed in rotating fields are important for understanding the behavior of superconducting parts in motors and levitating devices. [References: 29]
机译:利用先进的磁光技术研究了通过单向和旋转磁场再磁化的YBCO晶体板不同面上的通量分布。即使在平面场中宽宽比大的板中,涡旋线的弯曲对于再励磁过程也至关重要。小于临界半径的闭合涡流环塌陷,形成无辅助圆柱体:Meissner孔。这导致沿迈斯纳孔将超导电流收集到帘线中,并形成湍流通量。当在基面或端面平面上旋转磁场时,会发现类似的结构和异常的图案。通过模型电流分布,从测量的辅助轮廓拟合中检索结构中的电流值。旋转磁场中揭示的磁化模式对于理解电动机和悬浮设备中超导零件的行为很重要。 [参考:29]

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