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Robust Optimization of Nanoslit Array Sensor Based on Extraordinary Optical Transmission

机译:基于非凡光传输的纳米缝阵列传感器的鲁棒优化

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摘要

A robust optimization approach for plasmonic periodic array sensor based on extraordinary optical transmission is proposed using Kriging surrogate models to reduce the effects of uncertainty in various manufacturing processes while maintaining sensor performance. For systematic design with reasonable computation cost, the author adopt the universal Kriging models whose regression function is a polynomial. The gradient index and the multiobjective genetic algorithm are chosen as a robustness measure and a global optimization tool, respectively. The figure of merit and the gradient index are set as two objective functions, and the design variables are the slit width and height, respectively. The optical properties of interest are investigated using the finite-element method. The numerical optimization results show the proposed scheme to be powerful and efficient in designing nanoslity array sensors based on extraordinary optical transmission with fabrication uncertainty.
机译:提出了一种基于非常规光传输的等离激元周期阵列传感器的鲁棒优化方法,该方法使用Kriging替代模型来减少各种制造过程中不确定性的影响,同时保持传感器性能。对于具有合理计算成本的系统设计,作者采用了通用Kriging模型,其回归函数是多项式。选择梯度指数和多目标遗传算法分别作为鲁棒性度量和全局优化工具。将品质因数和梯度指数设置为两个目标函数,设计变量分别为狭缝宽度和高度。使用有限元方法研究了感兴趣的光学特性。数值优化结果表明,所提出的方案在基于具有制造不确定性的非凡光传输的纳米纳米阵列传感器的设计中是强大而有效的。

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