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首页> 外文期刊>Journal of Physics. Condensed Matter >Angle dependent molecular dynamics simulation of flux pinning in YBCO superconductors with artificial pinning sites
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Angle dependent molecular dynamics simulation of flux pinning in YBCO superconductors with artificial pinning sites

机译:用人工钉扎网站的YBCO超导体磁通钉钉的角度依赖性分子动力学模拟

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摘要

A molecular dynamics (MD) simulation to simulate the vortices in superconductors with artificial pinning sites is presented. The simulation reproduces the correct anisotropic behavior in angular dependence of critical current. We also show that the shape of the J(c)(B) curve depends on the size of the pinning sites and the change from p = 0.5 to p approximate to 1 is due to the breaking of the vortex lattice to individually acting vortices. The results beautifully correspond to experimental data. Furthermore, we found that the size and shape of the c-axis peak observed with columnar pinning sites in J(c)(theta) also depends on the size of the rods, larger pinning sites leading to wider peaks. The results obtained from the MD-simulation are similar to those of the much more computationally intensive Ginzburg-Landau simulations. Furthermore, the MD-simulations can provide insight to the vortex dynamics within the samples.
机译:提出了一种模拟具有人造钉扎站的超导体中的涡流的分子动力学(MD)仿真。 模拟在临界电流的角度依赖性中再现了正确的各向异性行为。 我们还表明,j(c)(b)曲线的形状取决于钉扎网站的尺寸,并且从p = 0.5到p的变化近似为1是由于涡流晶格与单独作用涡流的打破。 结果精美对应于实验数据。 此外,我们发现,在j(c)(θ)中观察到用柱状钉扎位点观察到的c轴峰的尺寸和形状也取决于杆的尺寸,导致峰值的较大钉扎网站。 从MD模拟获得的结果与更加计算密集的Ginzburg-Landau模拟相似。 此外,MD-Simulations可以对样品内的涡流动态提供洞察。

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