钉扎力
涡流
凝聚态物理
超导电性
各向异性
磁通钉扎
分子动力学
物理
格子(音乐)
齐纳钉扎
临界电流
金茨堡-兰道理论
Ⅱ型超导体
量子力学
机械
声学
作者
P. Paturi,Mika Malmivirta,Teemu Hynninen,H. Huhtinen
标识
DOI:10.1088/1361-648x/aad02b
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 [Formula: see text] curve depends on the size of the pinning sites and the change from p = 0.5 to [Formula: see text] 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 [Formula: see text] 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.
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