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Perfect imaging analysis of the spherical geodesic waveguide

机译:球形测地波导的完美成像分析

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Negative Refractive Lens (NRL) has shown that an optical system can produce images with details below the classic Abbe diffraction limit. This optical system transmits the electromagnetic fields, emitted by an object plane, towards an image plane producing the same field distribution in both planes. In particular, a Dirac delta electric field in the object plane is focused without diffraction limit to the Dirac delta electric field in the image plane. Two devices with positive refraction, the Maxwell Fish Eye lens (MFE) and the Spherical Geodesic Waveguide (SGW) have been claimed to break the diffraction limit using positive refraction with a different meaning. In these cases, it has been considered the power transmission from a point source to a point receptor, which falls drastically when the receptor is displaced from the focus by a distance much smaller than the wavelength. Although these systems can detect displacements up to λ/3000, they cannot be compared to the NRL, since the concept of image is different. The SGW deals only with point source and drain, while in the case of the NRL, there is an object and an image surface. Here, it is presented an analysis of the SGW with defined object and image surfaces (both are conical surfaces), similarly as in the case of the NRL. The results show that a Dirac delta electric field on the object surface produces an image below the diffraction limit on the image surface.
机译:负折射镜(NRL)表明光学系统可以产生具有低于经典ABBE衍射极限的细节的图像。该光学系统将由物体平面发射的电磁场朝向在两个平面中产生相同的场分布的图像平面。特别地,物体平面中的DIRAC DELTA电场聚焦在没有衍射极限到图像平面中的DIRAC DELTA电场。已经据称使用具有正折射的两个装置,麦克斯韦尔鱼眼镜透镜(MFE)和球形测地波导(SGW)使用具有不同含义的正折射来打破衍射极限。在这些情况下,已经被认为是从点源到点受体的电力传递,当受体从焦点移位到远小于波长的距离时,这急剧下降。虽然这些系统可以检测到λ/ 3000的位移,但它们不能与NRL进行比较,因为图像的概念是不同的。 SGW仅处理点源和漏极,而在NRL的情况下,存在对象和图像表面。这里,提出了具有定义对象的SGW的分析,并且图像表面(两者都是锥形表面),类似于在NRL的情况下。结果表明,物体表面上的DIRAC DELTA电场在图像表面上产生低于衍射极限的图像。

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