利用伊辛自旋计算的基态搜索优化原子结的实验参数

S. Sakai, Y. Iwata, Y. Katogi, M. Shiomura, Y. Kihara, M. Ito, J. Shirakashi
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引用次数: 0

摘要

反馈控制电迁移(FCE)已被用于控制具有量子化电导的金属纳米线并产生纳米间隙。基于经验设定实验参数是FCE中常见的做法。然而,调整参数的优化是棘手的,因为系统地尝试所有不同的组合实际上是不可能的。因此,我们提出了一种基于Ising自旋模型的FCE参数优化过程,该过程可以在较短的计算时间内在多维解空间中寻找全局最优解。利用Ising自旋模型的收敛特性确定了FCE参数。结果表明,该方法是FCE工艺优化的有效工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of experimental parameters for fabrication of atomic junctions using ground-state searches of Ising spin computing
Feedback-controlled electromigration (FCE) has been employed to control metal nanowires with quantized conductance and to create nanogaps. The setting of the experimental parameters based on experiences is a common practice in FCE. However, tuning the optimization of parameters is intractable because trying all different combinations systematically is practically impossible. Therefore, we proposed an optimization process of the FCE parameters using Ising spin model, which can search for the global optimum in a multidimensional solution space within short calculation time. The FCE parameters were determined through a convergence property of the Ising spin model. This result implies that the proposed method is an effective tool for the process optimization of FCE.
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