Litcius/Paper detail

Rapid customized design of a conformal optical transparent metamaterial absorber based on the circuit analog optimization method

Lin Dong, Liming Si, Haoyang Xu, Qitao Shen, Xin Lv, Yaqiang Zhuang, Qingle Zhang

2022Optics Express40 citationsDOIOpen Access PDF

Abstract

In this paper, a conformal optical transparent metamaterial absorber (COTMA) is proposed based on the circuit analog optimization method (CAOM), which can effectively enhance the optimization speed in the metamaterial absorber structure design by quantifying the equivalent circuit parameters. The operating frequency band can be customized at any band through CAOM, such as microwave, terahertz, and near-infrared frequencies. Here, a five-square-patch structure absorber with transparency and flexible properties is achieved. The simulated and measured incident electromagnetic (EM) wave absorptions of COTMA can reach above 90% in 15.77 - 38.69 GHz band. Meanwhile, COTMA exhibits excellent conformal EM absorption, a thinner substrate (0.078 wavelength at 15.77 GHz), lower structure complexity and polarization independence, and it can also be adapted to the EM absorption of different curved screens. This design is expected to have potential applications for wearable electronics, curved surface screens and OLED displays.

Topics & Concepts

MetamaterialMetamaterial absorberOpticsConformal mapMaterials scienceOptoelectronicsPolarization (electrochemistry)Equivalent circuitTransparency (behavior)WavelengthAbsorption (acoustics)RayPrinted circuit boardTransformation opticsCircuit designElectromagnetic radiationOptical circulatorElectronic circuitFrequency bandIntegrated circuitPhysicsOptimal designMetamaterials and Metasurfaces ApplicationsAdvanced Antenna and Metasurface TechnologiesElectromagnetic wave absorption materials