A broadband metamaterial absorber constructed of square metalized segments
Čelâbinskij fiziko-matematičeskij žurnal, Tome 7 (2022) no. 4, pp. 480-489.

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The aim of this paper is to study an absorber constructed of square metalized segments arranged on Arlon AD350 foil dielectric. The paper shows that the absorbing metamaterial possesses a broad operational absorption bandwidth of 1.5 GHz to 18 GHz, with an absorption coefficient of 0.9. The absorber also possesses the complete polarization independence at incidence angles ranging from 0$^{\circ}$ to 90$^{\circ}$.
Keywords: absorber, metamaterial, bandwidth, equivalent circuit.
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     title = {A broadband metamaterial absorber constructed of square metalized segments},
     journal = {\v{C}el\^abinskij fiziko-matemati\v{c}eskij \v{z}urnal},
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A. V. Dudarev; D. S. Klygach; M. G. Vakhitov; S. V. Dudarev; N. V. Dudarev. A broadband metamaterial absorber constructed of square metalized segments. Čelâbinskij fiziko-matematičeskij žurnal, Tome 7 (2022) no. 4, pp. 480-489. http://geodesic.mathdoc.fr/item/CHFMJ_2022_7_4_a6/

[1] Sarkhel A., Chaudhuri S.R.B., “Compact quad-band polarization-insensitive ultrathin metamaterial absorber with wide angle stability”, IEEE Antennas and Wireless Propagation Letters, 16 (2017), 3240–3244 | DOI

[2] Zeng X., Zhang L., Wan G., Gao M., “Active metamaterial absorber with controllable polarisation and frequency”, IEEE Antennas and Wireless Propagation Letters, 53:16 (2017), 1085–1086

[3] Hoque A., Islam M.T., Almutairi A.F., Alam T., Singh M.J., Amin N., “A polarization independent quasi-TEM metamaterial absorber for X and Ku band sensing applications”, Sensors, 18:12 (2018), 4209 | DOI

[4] Jafari F.S., Naderi M., Hatam A., Zarrabi F.B., “Microwave Jerusalem cross absorber by metamaterial split ring resonator load to obtain polarization independence with triple band application”, AEU — International Journal of Electronics and Communications, 101 (2019), 138–144 | DOI | MR

[5] Chen Q., Bie S., Yuan W., Xu Y., Xu H., Jiang J., “Low frequency absorption properties of a thin metamaterial absorber with cross-array on the surface of a magnetic substrate”, Journal of Physics D: Applied Physics, 49:42 (2016), 425102 | DOI

[6] Li S.-J., Wu P.-X., Xu H.-X., Zhou Y.-L., Cao X.-Y., Han J.-F., Zhang C., Yang H.-H., Zhang Z., “Ultra-wideband and polarization-insensitive perfect absorber using multilayer metamaterials, lumped resistors, and strong coupling effects”, Nanoscale Research Letters, 13 (2018), 386 | DOI

[7] Deng G., Lv K., Sun H., Hong Y., Zhang X., Yin Z., Li Y., Yang J., “An ultra-wideband, polarization insensitive metamaterial absorber based on multiple resistive film layers with wide-incident-angle stability”, International Journal of Microwave and Wireless Technologies, 13:1 (2021), 58–66 | DOI | MR

[8] Hannan S., Islam M.T., Almutairi A.F., Faruque M.R.I., “Wide bandwidth angle and polarization-insensitive symmetric metamaterial absorber for X and Ku band applications”, Scientific Reports, 10 (2020), 10338 | DOI

[9] Karaaslan M., Bagmanci M., Unal E., Akgol O., Sabah C., “Microwave energy harvesting based on metamaterial absorbers with multi-layered square split rings for wireless communications”, Optics Communications, 392 (2017), 31–38 | DOI

[10] Li W., Wei J., Wang W., Hu D., Li Y., Guan J., “Ferrite-based metamaterial microwave absorber with absorption frequency magnetically tunable in a wide range”, Materials and Design, 110 (2016), 27–34 | DOI

[11] Hoque A., Islam M.T., Almutairi A.F., Faruque M.R.I., Singh M.J., Islam M.S., “U-joint Double split O (UDO) shaped with split square metasurface absorber for X and k$_u$ band application”, Results in Physics, 15 (2019), 102757 | DOI

[12] Hoa N.T.Q., Tuan T.S., Hieu L.T., Giang B.L., “Facile design of an ultra-thin broadband metamaterial absorber for C-band applications”, Scientific Reports, 9 (2019), 468 | DOI

[13] Klygach D.S., Vakhitov M.G., Zherebtsov D.A., Kudryavtsev O.A., Knyazev N.S., Malkin A.I., “Investigation of electrical parameters of corundum-based material in X-band”, Journal of Materials Science: Materials in Electronics, 28:18 (2017), 13621–13625 | DOI

[14] Mishra N., Choudhary D.K., Chowdhury R., Kumari K., Chaudhary R.K., “An investigation on compact ultra-thin triple band polarization independent metamaterial absorber for microwave frequency applications”, IEEE Access, 5 (2017), 4370–4376 | DOI

[15] Xin W., Binzhen Z., Wanjun W., Junlin W., Junping D., “Design, fabrication, and characterization of a flexible dual-band metamaterial absorber”, IEEE Photonics Journal, 9:4 (2017), 4600512 | DOI

[16] Hannan S., Islam M.T., Hoque A., Singh M.J., Almutairi A.F., “Design of a novel double negative metamaterial absorber atom for Ku and K band applications”, Electronics, 8:8 (2019), 853 | DOI