School of Electronic Engineering and Computer Science, Queen Mary University of London, London E1 4NS, United Kingdom.
Phys Rev Lett. 2013 Nov 22;111(21):213901. doi: 10.1103/PhysRevLett.111.213901. Epub 2013 Nov 19.
This Letter presents a method for making an uneven surface behave as a flat surface. This allows an object to be concealed (cloaked) under an uneven portion of the surface, without disturbing the wave propagation on the surface. The cloaks proposed in this Letter achieve perfect cloaking that only relies upon isotropic radially dependent refractive index profiles, contrary to those previously published. In addition, these cloaks are very thin, just a fraction of a wavelength in thickness, yet can conceal electrically large objects. While this paper focuses on cloaking electromagnetic surface waves, the theory is also valid for other types of surface waves. The performance of these cloaks is simulated using dielectric filled waveguide geometries, and the curvature of the surface is shown to be rendered invisible, hiding any object positioned underneath. Finally, a transformation of the required dielectric slab permittivity was performed for surface wave propagation, demonstrating the practical applicability of this technique.
这封信提出了一种使不平坦表面表现为平坦表面的方法。这使得物体可以隐藏在表面的不平部分下,而不会干扰表面上的波传播。与之前发表的那些不同,这封信中提出的斗篷实现了仅依靠各向同性径向相关折射率分布的完美隐形,而不是以前发表的那些。此外,这些斗篷非常薄,只有波长的一小部分厚度,但可以隐藏电大的物体。虽然本文专注于电磁表面波的隐形,但该理论也适用于其他类型的表面波。使用填充介电质的波导几何形状对这些斗篷的性能进行了模拟,显示出表面的曲率变得不可见,隐藏了位于其下方的任何物体。最后,对表面波传播进行了所需介电板介电常数的变换,证明了该技术的实际适用性。