论文标题
用于片上场梯度的纳米磁铁的最佳设计
Optimal design of nanomagnets for on-chip field gradients
论文作者
论文摘要
片上纳米磁铁生成局部磁场梯度对于多种技术应用很重要,尤其对于自旋量子台很重要。为了超越这些纳米磁体的经验设计,我们提出了一种基于最佳场梯度源的微磁性公式的系统和一般方法。我们研究可以实现的不同场合构型,并定量发现最合适的铁磁层几何形状。然后,使用微磁模拟,我们研究了这些纳米磁体中达到磁饱和的最小要求。在纵向或横向场梯度方面,结果为均匀,饱和纳米磁体提供了最佳的解决方案,可以根据可以使用的外部场的强度选择磁性材料。
The generation of localized magnetic field gradients by on-chip nanomagnets is important for a variety of technological applications, in particular for spin qubits. To advance beyond the empirical design of these nanomagnets, we propose a systematic and general approach based on the micromagnetic formulation of an optimal field gradient source. We study the different field configurations that can be realized and find out quantitatively the most suitable ferromagnetic layer geometries. Using micromagnetic simulations, we then investigate the minimum requirements for reaching magnetic saturation in these nanomagnets. In terms of either longitudinal or transverse field gradient, the results provide an optimal solution for uniform, saturated nanomagnets, where the magnetic material can be selected according to the strength of the external fields that can be used.