薄膜波导Luneburg透镜的剖面厚度合成

K. Lovetskiy, A. Sevastianov, A. Zorin
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引用次数: 0

摘要

在工作中,证明了波导Luneburg透镜的有效折射率的聚焦不均匀性与产生这种不均匀性的波导层厚度的不规则性之间的联系。对于绝热波导模模型中不规则薄膜波导的色散关系,解决了给定焦距的Luneburg薄膜广义波导透镜波导层厚度分布的数学综合和计算机辅助设计问题。计算是在归一化(以特殊方式)坐标中进行的,以使所使用的关系适应计算机计算。将获得的解与横截面法中的相同解进行比较。通过绘制色散曲线和绘制一系列色散曲线,证明了该算法在Delphi中实现的性能,证明了其临界收敛性。作为附加结果,合成了形成薄膜广义波导Luneburg透镜的附加(厚度不规则)波导层的厚度分布。这个结果推广了Southwell的结果。
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Profile thickness synthesis of thin-film waveguide Luneburg lens
In the work the link between the focusing inhomogeneity of the effective refractive index of waveguide Luneburg lens and the irregularity of the waveguide layer thickness generating this inhomogeneity is demonstrated. For the dispersion relation of irregular thin-film waveguide in the model of adiabatic waveguide modes the problem of mathematical synthesis and computer-aided design of the waveguide layer thickness profile for the Luneburg thin-film generalized waveguide lens with a given focal length is being solved. The calculations are carried out in normalized (in a special way) coordinates to adapt the used relations to computer calculations. The obtained solution is compared with the same solution within the cross-section’s method. The performance of the algorithm implemented in Delphi, was demonstrated by plotting the dispersion curves and plotting a family of dispersion curves, demonstrating a critical convergence. As an additional result, the thickness profiles of additional (irregular in thickness) waveguide layer, forming a thin film generalized waveguide Luneburg lens were synthesized. This result generalizes Southwell’s results.
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CiteScore
0.60
自引率
0.00%
发文量
20
审稿时长
10 weeks
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