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Image fidelity for single-layer and multi-layer silver superlenses

机译:单层和多层银超透镜的图像保真度

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摘要

In response to increasing interest in the area of subdiffraction-limited near-field imaging, the performance of several different realizable and theoretical superresolving silver-based lenses is simulated for a variety of different input object profiles. A computationally-efficient T-matrix technique is used to model the lenses, which consist of layers of silver with total width of 40 nm sandwiched between layers of polymethyl methacrylate and silicon dioxide. The lenses are exposed to nonperiodic bright- and dark-slit input patterns, with feature size varied between 1 mn and 2.5 mu m. The performance of the lenses is characterized in terms of transfer function, contrast profile, error profile, and input-to-output correlation. It is shown that increasing the number of layers in a lens increases the lens' transmission coefficients at high spatial frequencies; however, this does not always lead to better imaging performance. The main reasons for this are lens-specific resonances that distort features at certain spatial frequencies, and the increased attenuation of the DC component of transmitted images, which reduces image fidelity, particularly for dark-line features. This suggests that, to achieve optimum results, the design of the superresolving lens system should take into account the characteristics of the images that it is expected to transmit. (C) 2008 Optical Society of America.
机译:为了响应人们对亚衍射极限近场成像领域日益增长的兴趣,针对各种不同的输入物体轮廓,模拟了几种不同的可实现的和理论上的超分辨银基镜头的性能。一种计算效率高的T矩阵技术用于对镜片建模,该镜片由夹在聚甲基丙烯酸甲酯和二氧化硅层之间的总宽度为40 nm的银层组成。镜片暴露于非周期性的亮缝和暗缝输入模式,特征尺寸在100万至2.5微米之间变化。镜片的性能以传递函数,对比度分布,误差分布和输入输出相关性为特征。结果表明,增加镜片的层数会增加在高空间频率下镜片的透射系数;但是,这并不总能带来更好的成像性能。造成这种情况的主要原因是特定于镜头的共振会在某些空间频率处扭曲特征,并且透射图像的直流分量的衰减增加,这会降低图像保真度,尤其是对于暗线特征。这表明,为了获得最佳结果,超分辨透镜系统的设计应考虑到预期要传输的图像的特征。 (C)2008年美国眼镜学会。

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