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3D Visible‐Light Invisibility Cloak

机译:3D可见光隐形斗篷

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摘要

The concept of an invisibility cloak is a fixture of science fiction, fantasy, and the collective imagination. However, a real device that can hide an object from sight in visible light from absolutely any viewpoint would be extremely challenging to build. The main obstacle to creating such a cloak is the coupling of the electromagnetic components of light, which would necessitate the use of complex materials with specific permittivity and permeability tensors. Previous cloaking solutions have involved circumventing this obstacle by functioning either in static (or quasistatic) fields where these electromagnetic components are uncoupled or in diffusive light scattering media where complex materials are not required. In this paper, concealing a large‐scale spherical object from human sight from three orthogonal directions is reported. This result is achieved by developing a 3D homogeneous polyhedral transformation and a spatially invariant refractive index discretization that considerably reduce the coupling of the electromagnetic components of visible light. This approach allows for a major simplification in the design of 3D invisibility cloaks, which can now be created at a large scale using homogeneous and isotropic materials.
机译:隐形斗篷的概念是科幻小说,幻想和集体想象力的固定物。但是,要构建一个真正的设备,无论从任何角度看,都可以在可见光下将对象隐藏在可见光下,这将是极具挑战性的。产生这种隐身衣的主要障碍是光的电磁成分的耦合,这将有必要使用具有特定介电常数和磁导率张量的复杂材料。先前的隐蔽解决方案涉及通过在这些电磁分量未耦合的静态(或准静态)领域或在不需要复杂材料的扩散光散射介质中起作用来规避此障碍。本文报道了从三个正交方向对人的视线隐藏大型球形物体的报道。通过开发3D均匀多面体变换和空间不变的折射率离散化可显着降低可见光电磁分量的耦合,从而获得此结果。这种方法可以大大简化3D隐形斗篷的设计,现在可以使用均质和各向同性的材料大规模创建这种斗篷。

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