Entirely electromagnetic analysis of microlenses without a beam-shaping aperture

Juan Liu, Bi Zhen Dong, Ben Yuan Gu, Guo Zhen Yang

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摘要

We suggest an approach for numerically studying the performance of cylindrical microlenses without a beam-shaping aperture based on the boundary-element method (BEM). We divide the infinite microlens boundary into two components: The first part is an infinite expanded flat interface excluding the curved interface, and the second part is only the originally curved microlens interface. The resulting transmitted field can be regarded as the composition of two fields: One is generated by the first boundary, and the other is contributed from the second boundary. We carry out numerical simulations for two microlens systems, with or without aperture. We find that, for the nonapertured system, an ideal focusing feature is still observed; however, the axial distribution of the transmitted field exhibits an oscillation, different from the apertured system. It is expected that the current approach may provide a useful technique for the analysis of micro-optical elements.

源语言英语
页(从-至)1686-1691
页数6
期刊Applied Optics
40
10
DOI
出版状态已出版 - 1 4月 2001
已对外发布

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Liu, J., Dong, B. Z., Gu, B. Y., & Yang, G. Z. (2001). Entirely electromagnetic analysis of microlenses without a beam-shaping aperture. Applied Optics, 40(10), 1686-1691. https://doi.org/10.1364/AO.40.001686