首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Two-dimensional point spread matrix of layered metal-dielectric imaging elements
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Two-dimensional point spread matrix of layered metal-dielectric imaging elements

机译:层状金属介电成像元件的二维点扩展矩阵

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We describe the change of the spatial distribution of the state of polarization occurring during two-dimensional (2D) imaging through a multilayer and in particular through a layered metallic flat lens. Linear or circular polarization of incident light is not preserved due to the difference in the amplitude transfer functions for the TM and TE polarizations. In effect, the transfer function and the point spread function (PSF) that characterize 2D imaging through a multilayer both have a matrix form, and cross-polarization coupling is observed for spatially modulated beams with a linear or circular incident polarization. The PSF in a matrix form is used to characterize the resolution of the superlens for different polarization states. We demonstrate how the 2D PSF may be used to design a simple diffractive nanoelement consisting of two radial slits. The structure assures the separation of nondiffracting radial beams originating from two slits in the mask and exhibits an interesting property of a backward power flow in between the two rings.
机译:我们描述了通过多层(尤其是通过分层的金属平板透镜)在二维(2D)成像期间发生的偏振态的空间分布的变化。由于TM和TE偏振的振幅传递函数不同,因此无法保留入射光的线性或圆偏振。实际上,通过多层表征2D成像的传递函数和点扩展函数(PSF)都具有矩阵形式,并且对于具有线性或圆形入射偏振的空间调制光束,观察到了交叉偏振耦合。矩阵形式的PSF用于表征不同偏振态下超透镜的分辨率。我们演示了如何将2D PSF用于设计由两个径向缝组成的简单衍射纳米元件。该结构确保了源于掩模中两个狭缝的非衍射径向光束的分离,并展现了两个环之间反向功率流的有趣特性。

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