论文标题
通过无限各向异性培养基启用的超薄地毯斗篷
Ultrathin carpet cloak enabled by infinitely anisotropic medium
论文作者
论文摘要
多亏了在转换光学(TO)和元信息领域进行的开创性研究,最近已经实现了许多前所未有的设备,例如隐形斗篷。但是,这些方法中的每一种都有一些缺点,这些缺点限制了设计设备在现实生活中的适用性。例如,研究导致具有与隐藏物体的尺寸相当甚至更大的厚度的笨重涂层层。在本文中,基于坐标转换,提出了一个超薄地毯斗篷,以使用薄的各向异性材料(称为无限各向异性培养基(IAM))隐藏具有任意形状和大小的物体。结果表明,与以前的基于元图的地毯斗篷不同,所提出的IAM将对象从所有查看的入射角中隐藏起来,而与对象尺寸相比,它非常薄。该材料还规避了传统的转换光学复杂性,并且可以在实际情况下轻松实现。为了证明拟议的地毯斗篷的能力,进行了几次全波模拟。最后,作为概念证明,IAM是基于有效的介质理论实施的,该理论与从理论研究中获得的结果表现出了良好的一致性。引入的材料不仅构成了迈向隐形斗篷的重要一步,而且还可以大大促进其他设备的实际应用。
Thanks to the pioneering studies conducted on the fields of transformation optics (TO) and metasurfaces, many unprecedented devices such as invisibility cloaks have been recently realized. However, each of these methods has some drawbacks limiting the applicability of the designed devices for real-life scenarios. For instance, TO studies lead to bulky coating layer with the thickness that is comparable to, or even larger than the dimension of the concealed object. In this paper, based on the coordinate transformation, an ultrathin carpet cloak is proposed to hide objects with arbitrary shape and size using a thin anisotropic material, called as infinitely anisotropic medium (IAM). It is shown that unlike the previous metasurface-based carpet cloaks, the proposed IAM hides objects from all viewing incident angles while it is extremely thin compared with the object dimensions. This material also circumvents the conventional transformation optics complexities and could be easily implemented in practical scenarios. To demonstrate the capability of the proposed carpet cloak, several full-wave simulations are carried out. Finally, as a proof of concept, the IAM is implemented based on the effective medium theory which exhibits good agreement with the results obtained from the theoretical investigations. The introduced material not only constitutes a significant step towards the invisibility cloak but also can greatly promote the practical application of the other TO-based devices.