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Numerical analysis of wide-field optical imaging with a sub-20 nm resolution based on a meta-sandwich structure

机译:基于亚夹心结构的分辨率小于20 nm的宽视场光学成像的数值分析

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摘要

Biological research requires wide-field optical imaging techniques with resolution down to the nanometer scale to study the biological process in a sub-cell or single molecular level. To meet this requirement, wide-field structured illumination method (WFSIM) has been extensively studied. The resolution of WFSIM is determined by the period of the optical interference pattern. However, in traditional WFSIM this period is diffraction limited so that pattern having periodicity smaller than 100 nm cannot be generated and as a result achieving an imaging resolution better than 50 nm is a great challenge. Here, we demonstrate a wide-field optical nanoimaging method based on a meta-sandwich structure (MSS) model. It is found that this structure can support standing wave surface plasmons interference pattern with a period of only 31 nm for 532 nm wavelength incident light. Furthermore, the potential application of the MSS for wide-field super-resolution imaging is discussed and the simulation results show an imaging resolution of sub-20 nm can be achieved. The demonstrated method paves a new route for the improvement of the wide field optical nanoimaging, which can be applied by biological researchers to study biological process conducted in cell membrane, such as mass transportation and others.
机译:生物学研究需要分辨率低至纳米级的广域光学成像技术,以研究亚细胞或单个分子水平的生物学过程。为了满足该要求,已经广泛研究了广域结构照明方法(WFSIM)。 WFSIM的分辨率取决于光学干涉图样的周期。但是,在传统的WFSIM中,此周期受衍射限制,因此无法生成周期小于100μm的图案,因此,要实现优于50μnm的成像分辨率是一个很大的挑战。在这里,我们演示了基于亚夹心结构(MSS)模型的广域光学纳米成像方法。结果发现,这种结构可以支持驻波表面等离子体激元干涉图样,对于532 nm波长的入射光,其周期仅为31 nm。此外,讨论了MSS在宽视场超分辨率成像中的潜在应用,仿真结果表明可以实现低于20μnm的成像分辨率。所证明的方法为改善广域光学纳米成像开辟了一条新途径,生物学研究人员可以将其应用于研究在细胞膜中进行的生物过程,例如大规模运输等。

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