Hsu Liyi, Ndao Abdoulaye, Kanté Boubacar
Opt Lett. 2019 Jun 15;44(12):2978-2981. doi: 10.1364/OL.44.002978.
In the past few years, carpet cloaking has attracted interest because of its feasibility at optical frequencies and potential in stealth technologies. Metasurfaces have been proposed as a method to engineer ultra-thin carpet cloaking surfaces due to their abilities to manipulate wavefronts, polarization, and phase at subwavelength scale. However, achieving broadband carpet cloaking with a significant bandwidth is one of the key remaining challenges for metasurface designs. To date, broadband carpet cloaking based on metasurfaces has not been achieved, and operation has been limited to discrete wavelengths. Here, we propose and numerically demonstrate a novel metasurface design for broadband carpet cloaking with linear polarization at visible wavelengths from 650 nm to 800 nm. Our proposed method is a promising approach for broadband structured interfaces.
在过去几年中,地毯式隐身因其在光频下的可行性以及在隐身技术中的潜力而备受关注。超表面已被提议作为一种设计超薄地毯式隐身表面的方法,因为它们能够在亚波长尺度上操纵波前、偏振和相位。然而,实现具有显著带宽的宽带地毯式隐身是超表面设计中剩下的关键挑战之一。迄今为止,基于超表面的宽带地毯式隐身尚未实现,其操作仅限于离散波长。在此,我们提出并通过数值模拟证明了一种用于在650纳米至800纳米可见光波长下实现线性偏振宽带地毯式隐身的新型超表面设计。我们提出的方法是一种用于宽带结构化界面的有前途的方法。