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Optimization of a Stern–Gerlach Magnet by Magnetic Field–Circuit Coupling and Isogeometric Analysis

机译:磁场-电路耦合和等几何分析优化斯特恩-格拉拉赫磁铁

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Stern–Gerlach magnets are used to magnetically separate a beam of atoms or atom clusters. The design is difficult, since both the magnetic field gradient and its homogeneity should be maximized. This paper proposes the numerical optimization of the device’s pole-shoe shapes, starting from a reference geometry given in the literature. The main contributions of this paper are the generalization of a magnetic field–magnetic circuit coupling and the application of isogeometric analysis (IGA), which are shown to reduce the computational complexity and increase the accuracy. The field–circuit coupling significantly reduces the size of the field model part, in which the IGA’s spline-based framework enables a highly accurate evaluation of local field quantities, even across elements.
机译:斯特恩-格拉拉赫(Stern-Gerlach)磁体用于磁性分离原子或原子团簇。由于磁场梯度及其均匀性均应最大化,因此设计很困难。本文从文献中给出的参考几何形状出发,提出了对设备的极靴形状进行数值优化的建议。本文的主要贡献是磁场-磁路耦合的一般化以及等几何分析(IGA)的应用,这些方法可以降低计算复杂度并提高准确性。场电路耦合极大地减小了场模型零件的尺寸,其中IGA基于样条的框架甚至可以跨元素对本地场量进行高精度评估。

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