Bilal Rana Muhammad Hasan, Baqir Muhammad Abuzar, Hameed Musab, Naqvi Syed Aftab, Ali Muhammad Mahmood
J Opt Soc Am A Opt Image Sci Vis. 2022 Jan 1;39(1):136-142. doi: 10.1364/JOSAA.444523.
The inherent bandwidth limitations make it quite challenging to achieve the wideband response of metamaterial absorbers. In this paper, a metamaterial absorber based on triangular metallic rings has been proposed to attain wideband absorption (>90) in the wavelength span of 400-750 nm. The absorber is constituted of periodically placed unit cells, where each unit cell contains three concentric triangular chromium metal rings. The absorption of the design remains stable (above 70%) over a wide range of incidence obliquity (0°-60°) under transverse electric (TE) and transverse magnetic (TM) polarization. Further, the absorber shows polarization-insensitive behavior over different polarization states. The low-cost and thermally endurable chromium metal, wide absorption, and wide-angle stability make the proposed absorber a suitable candidate for applications like solar energy harvesting, solar detectors, solar thermal photovoltaics, and photonic devices.
固有的带宽限制使得实现超材料吸波器的宽带响应颇具挑战性。本文提出了一种基于三角形金属环的超材料吸波器,以在400 - 750纳米的波长范围内实现宽带吸收(>90%)。该吸波器由周期性排列的单元组成,每个单元包含三个同心的三角形铬金属环。在横向电场(TE)和横向磁场(TM)极化下,该设计在很宽的入射角范围(0° - 60°)内吸收保持稳定(高于70%)。此外,该吸波器在不同极化状态下表现出对极化不敏感的特性。低成本且耐热的铬金属、宽吸收以及宽角度稳定性使得所提出的吸波器成为太阳能收集、太阳能探测器、太阳能热光伏和光子器件等应用的合适候选者。