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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Numerical effects in the simulation of Ginzburg-Landau models for superconductivity
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Numerical effects in the simulation of Ginzburg-Landau models for superconductivity

机译:Ginzburg-Landau模型超导模拟中的数值效应

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摘要

Inadequate spatial mesh resolution for simulation of the time-dependent Ginzburg-Landau equations is shown to give rise to spurious solutions. Phenomenological studies to examine the effect of the physical parameters and boundary conditions in 2D and 3D are presented to illustrate the solution structure and to highlight non-linear effects related to evolving vortex patterns. We illustrate and explore this issue further by considering a related simplified model in which the number of vortices is equal to the winding number that is associated with the applied boundary conditions. Using this model we demonstrate that the solution structure is non-unique for several values of winding number.
机译:结果表明,不足以模拟与时间有关的Ginzburg-Landau方程的空间网格分辨率会引起杂散解。现象学研究旨在检验物理参数和边界条件在2D和3D中的影响,以说明溶液结构并突出显示与不断演变的旋涡模式有关的非线性影响。我们通过考虑一个相关的简化模型来进一步说明和探索这个问题,在该模型中,涡旋数等于与应用边界条件相关的绕组数。使用该模型,我们证明了绕组数的多个值的解结构是不唯一的。

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