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Spherical gradient-index lenses as perfect imaging and maximum power transfer devices

机译:球面梯度折射率透镜可作为完美的成像和最大功率传输设备

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摘要

Gradient-index lenses can be viewed from the perspectives of both imaging and nonimaging optics, that is, in terms of both image fidelity and achievable flux concentration. The simple class of gradient-index lenses with spherical symmetry, often referred to as modified Luneburg lenses, is revisited. An alternative derivation for established solutions is offered; the method of Fermat's strings and the principle of skewness conservation are invoked. Then these nominally perfect imaging devices are examined from the additional vantage point of power transfer, and the degree to which they realize the thermodynamic limit to flux concentration is determined. Finally, the spherical gradient-index lens of the fish eye is considered as a modified Luneburg lens optimized subject to material constraints.
机译:可以从成像光学和非成像光学的角度,即从图像保真度和可达到的通量集中度的角度来观察渐变折射率透镜。回顾了简单的一类具有球对称性的渐变折射率镜片,通常被称为改良的Luneburg镜片。提供了既定解决方案的替代推导;引用了费马弦的方法和偏度守恒原理。然后,从功率传输的附加有利位置检查这些名义上完美的成像设备,并确定它们实现对通量浓度的热力学极限的程度。最后,鱼眼的球面渐变折射率镜片被视为经过材料限制而优化的改良型Luneburg镜片。

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