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An Investigation of Influencing Factors on Practical Sub-Diffraction-Limit Focusing of Planar Super-Oscillation Lenses

机译:平面超振荡镜片实用次衍射极限聚焦影响因素的研究

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摘要

Planar super-oscillation lenses (SOLs) can fulfill super-resolution focusing and nanoscopic imaging in the far field without the contribution of evanescent waves. Nevertheless, the existing deviations between the design and experimental results have been seldomly investigated, leaving the practical applications of SOLs unpredictable and uncontrollable. In this paper, some application-oriented issues are taken into consideration, such as the inevitable fabrication errors and the size effect of the designed SOLs, with the aim of providing an engineering reference to elaborately customize the demanded focusing light field. It turned out that a thicker structural film makes the focal spots enlarged, while the sloped sidewalls just weaken the intensity of the focal hotspot. Furthermore, the focal lengths are diminished with the decrease of device size, while the focal spots are enlarged. This research will promote the wide-spread applications of SOLs for sub-diffraction-limit far-field focusing in the areas of nanoscopy and high-density optical storage.
机译:平面超级振荡镜片(溶胶)可以在远场中满足超级分辨率的聚焦和纳米镜上成像,而不会贡献渐逝波。尽管如此,设计和实验结果之间存在的偏差已经很少调查,源于溶胶不可预测和无法控制的实际应用。在本文中,考虑了一些面向应用的问题,例如所设计的溶剂的不可避免的制造误差和尺寸效应,目的是提供工程参考以精心定制所需的聚焦光场。事实证明,较厚的结构薄膜使焦点扩大,而倾斜的侧壁只是削弱了焦点热点的强度。此外,焦距随着器件尺寸的降低而减小,而焦点被放大。该研究将促进溶胶在纳米透视和高密度光学存储区域中的子衍射极限远场的广泛应用。

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