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Broadband Wide Angle Lens Implemented with Dielectric Metamaterials

机译:介电超材料实现的宽带广角镜

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摘要

The Luneburg lens is a powerful imaging device, exhibiting aberration free focusing for parallel rays incident from any direction. However, its advantages are offset by a focal surface that is spherical and thus difficult to integrate with standard planar detector and emitter arrays. Using the recently developed technique of transformation optics, it is possible to transform the curved focal surface to a flat plane while maintaining the perfect focusing behavior of the Luneburg over a wide field of view. Here we apply these techniques to a lesser-known refractive Luneburg lens and implement the design with a metamaterial composed of a semi-crystalline distribution of holes drilled in a dielectric. In addition, we investigate the aberrations introduced by various approximations made in the implementation of the lens. The resulting design approach has improved mechanical strength with small aberrations and is ideally suited to implementation at infrared and visible wavelengths.
机译:Luneburg镜头是功能强大的成像设备,对从任何方向入射的平行光线均显示无像差聚焦。然而,其优点被球形的焦面所抵消,因此难以与标准的平面检测器和发射器阵列集成。使用最新开发的转换光学技术,可以将弯曲的焦面转换为平坦的平面,同时在宽广的视场范围内保持Luneburg的完美聚焦性能。在这里,我们将这些技术应用于鲜为人知的折射Luneburg透镜,并使用由在电介质中钻出的孔的半晶体分布组成的超材料实现设计。另外,我们研究了在实现镜头时由各种近似值引入的像差。最终的设计方法以较小的像差提高了机械强度,非常适合在红外和可见光波长下实施。

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