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Chaotic vortex dynamics and low current phases in the remanent state of MgB2 thin films

机译:MgB2薄膜剩余态的混沌涡旋动力学和低电流相

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摘要

The current carrying critical state in thin superconducting films can become unstable at low temperatures. Collective motion of flux lines in the form of thermomagnetic avalanches leads to a substantial suppression of the critical current density and magnetization in the remanent state. Since the formation of these chaotic processes is strongly dependent on the local magnetic flux density, these effects can be restricted to particular areas of a thin film superconductor. We show magneto- optical images of the remanent state of thin magnesium diboride films. By producing difference images of remanent states subsequently prepared under the same conditions, the areas of chaotic flux line behaviour can be easily identified. Temperature- dependent investigations show that the area of chaotic motion grows with decreasing temperature below T = 10 K.
机译:超导薄膜中的载流临界状态在低温下可能变得不稳定。热线雪崩形式的磁通线的集体运动会导致对剩余电流中的临界电流密度和磁化强度的实质性抑制。由于这些混沌过程的形成在很大程度上取决于局部磁通密度,因此这些影响可以限制在薄膜超导体的特定区域。我们显示了二硼化镁薄膜剩余状态的磁光图像。通过产生随后在相同条件下准备的剩余状态的差异图像,可以轻松地识别混沌磁通线行为的区域。温度相关的研究表明,随着温度降低到T = 10 K以下,混沌运动的区域会增加。

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