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Super-resolution imaging by metamaterial-based compressive spatial-to-spectral transformation

机译:超分辨率成像通过metamaterial-based压缩spatial-to-spectral转换

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摘要

We present a new far-field super-resolution imaging approach called compressive spatial to spectral transformation microscopy (CSSTM). The transformation encodes the high-resolution spatial information to a spectrum through illuminating sub-diffraction-limited and wavelength-dependent patterns onto an object. The object is reconstructed from scattering spectrum measurements in the far field. The resolution of the CSSTM is mainly determined by the materials used to perform the spatial to spectral transformation. As an example, we numerically demonstrate sub-15 nm resolution by using a practically achievable Ag/SiO2 multilayer hyperbolic metamaterial.
机译:我们提出一个新的远场超分辨率成像方法称为压缩空间光谱转换显微镜(CSSTM)。变换编码的高分辨率空间信息的频谱照明sub-diffraction-limited和wavelength-dependent模式到一个对象。对象从散射光谱重建在远场测量。CSSTM主要是由材料决定的用于执行空间谱转换。演示sub-15 nm决议通过几乎可以实现Ag /二氧化矽多层双曲超材料。

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