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首页> 外文期刊>Optics Letters >Engineering space for light via transformation optics
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Engineering space for light via transformation optics

机译:通过转换光学器件的光的工程空间

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摘要

Conceptual studies and numerical simulations are performed for imaging devices that transform a near-field pattern into magnified far-zone images and are based on high-order spatial transformation in cylindrical domains. A lens translating a near-field pattern from an almost circular input boundary onto a magnified far-field image at a flat output boundary is considered. The lens is made of a metamaterial with anisotropic permittivity and permeability both depending on a single "scaling" parameter of the transformation. Open designs of the lens with a truncated body (3/4-body and 1/4-body lenses) are suggested and analyzed. It is shown that the ideal full lens and the 3/4-body lens produce identical images. Numerical simulations of 1/4-body designs indicate that further truncation of the lens could limit its performance. A light concentrator "focusing" far-zone fields into a nanometer-scale area is also considered.
机译:对成像设备进行了概念研究和数值模拟,这些成像设备将近场模式转换为放大的远区图像,并且基于圆柱域中的高阶空间转换。考虑了将近场图案从几乎圆形的输入边界转换为平坦输出边界处的放大的远场图像的透镜。透镜由具有各向异性介电常数和磁导率的超材料制成,这两者都取决于变换的单个“缩放”参数。建议并分析具有截短主体(3/4主体和1/4主体的镜头)的镜头的开放设计。结果表明,理想的全镜头和3 / 4-body镜头可产生相同的图像。 1/4车身设计的数值模拟表明,进一步缩短镜头可能会限制其性能。还考虑了一种聚光器,将远场场“聚焦”到纳米级区域。

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