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Refining the perfect lens

机译:完善完美的镜头

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Some time ago it was shown that a slab of material with epsilon(t) = -1, mu(1) = -1 and suspended in vacuo has the ability to focus a perfect image: both the near-field and far-field components are delivered to the image plane with the correct amplitude and phase reproducing every detail in the original source [Phys. Rev. Lett. 85 (2000) 3966]. Real materials fall short of this ideal particularly with respect to losses which manifest themselves as imaginary components to epsilon(1) and mu(1). In this talk we shall examine how to minimise the restrictions by structuring the lens into a series of thin slices. This results in a novel mapping onto an anisotropic system which behaves like an optical fibre bundle, but operating on the near field. (C) 2003 Elsevier B.V. All rights reserved. [References: 14]
机译:前段时间表明,一块εε= -1,mu(1)= -1并悬浮在真空中的材料平板具有聚焦完美图像的能力:近场和远场分量信号以正确的幅度和相位传送到图像平面,从而再现原始信号源中的每个细节。牧师85(2000)3966]。实际材料特别是在损耗方面不符合这一理想,损耗本身表现为epsilon(1)和mu(1)的虚部。在本次演讲中,我们将研究如何通过将透镜构造成一系列薄片来最小化限制。这导致向各向异性系统的新颖映射,该各向异性系统的行为类似于光纤束,但在近场上工作。 (C)2003 Elsevier B.V.保留所有权利。 [参考:14]

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