Microwave absorptions of ultrathin conductive films and designs of frequency-independent ultrathin absorbers

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Abstract

We study the absorption properties of ultrathin conductive films in the microwave regime, and find a moderate absorption effect which gives rise to maximal absorbance 50% if the sheet (square) resistance of the film meets an impedance matching condition. The maximal absorption exhibits a frequency-independent feature and takes place on an extremely subwavelength scale, the film thickness. As a realistic instance, ∼5 nm thick Au film is predicted to achieve the optimal absorption. In addition, a methodology based on metallic mesh structure is proposed to design the frequency-independent ultrathin absorbers. We perform a design of such absorbers with 50% absorption, which is verified by numerical simulations.

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Li, S., Anwar, S., Lu, W., Hang, Z. H., Hou, B., Shen, M., & Wang, C. H. (2014). Microwave absorptions of ultrathin conductive films and designs of frequency-independent ultrathin absorbers. AIP Advances, 4(1). https://doi.org/10.1063/1.4863921

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