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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Two-band superconducting square with a central defect: role of the deGennes extrapolation length
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Two-band superconducting square with a central defect: role of the deGennes extrapolation length

机译:双频超导正方形,具有中央缺陷:Degennes推断长度的作用

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We present the influence of the deGennes extrapolation length on the vortex matter in a two band superconducting square with a central defect. This is determined by considering different values of the de Gennes extrapolation length b on the lateral surface of the sample. Our investigation was carried out by solving the two-dimensional time-dependent Ginzburg-Landau equations for a two-band system (2B-TDGL). We studied the density, magnetization, vorticity, and critical fields of the superconducting electrons as functions of the external applied magnetic field for different values of b on the surfaces of the sample and different sizes of the internal square defect. We show an unconventional vortex state due to the repulsive (attractive) short- (long-) range potential between the vortices. Finally, we show that at the limit of the thin film, a two-band system behaves like a three-band system.
机译:我们在具有中央缺陷的两个频段超导正方形中展示了Degennes推断长度对涡旋物质的影响。 这是通过考虑样品的侧表面上的DE Gennes推断长度B的不同值来确定。 通过求解双频系统(2B-TDGL)的二维时间依赖的Ginzburg-Landau方程来进行我们的研究。 我们研究超导电子的密度,磁化,涡度和临界场作为外部施加的磁场的功能,用于样品表面的不同值和内部方形缺陷的不同尺寸。 由于涡流之间的令人厌恶的(有吸引力)短(长)范围潜力,我们表现出一种非常规涡流状态。 最后,我们表明,在薄膜的极限下,双频系统的行为类似于三频带系统。

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