基于加权闵科夫斯基距离的超透镜相位估计法

    Phase estimation method of metalens based on weighted Minkowski distance

    • 摘要: 超透镜(metalens)可通过特殊设计的微纳结构突破传统光学系统的性能限制,实现轻量化高分辨成像。消色差超透镜的理想相位分布和真实超原子相位分布存在偏差,这种偏差难以定量估计。采用基于曼哈顿距离或欧氏距离的方法估计误差,容易忽略部分频点处大误差的影响,灵活性差。为了解决上述问题,提出了一种基于加权闵科夫斯基距离的误差估计方法。通过建立空间维数p与径向位置、权重向量w与单频误差以及色散的关联模型,此方法增强了对宽带光谱特征及空间相位梯度变化的表征敏感度,从而更有效地抑制了部分频点的相位偏差。仿真分析结果表明:使用基于加权闵科夫斯基距离的误差估计方法设计的超构透镜相比其他方法聚焦效率更高,达到27.974%,综合性能也优于传统相位误差估计方法的设计结果。

       

      Abstract: Metalenses can break through the performance limitations of traditional optical systems through specially designed nanostructures, enabling lightweight, high-resolution imaging. There exists a discrepancy between the ideal phase distribution of achromatic metalenses and the actual phase distribution of real meta-atoms, which is difficult to quantify. Methods based on Manhattan or Euclidean distance tend to overlook the impact of large errors at certain frequency points, resulting in poor flexibility. To address the aforementioned issues, an error estimation method based on the weighted Minkowski distance was proposed. By establishing correlation models between the spatial dimension p and radial position, the weight vector w and single-frequency error as well as dispersion, this method enhanced the responsiveness to broadband spectral features and spatial phase gradient variations, thereby more effectively suppressing phase deviations at certain frequency points. Simulation results show that metalenses designed with weighted Minkowski estimation method achieves a higher focusing efficiency of 27.974% and demonstrates superior overall performance compared to designs based on conventional methods.

       

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