TRIPLE BAND CIRCULAR RING-SHAPED METAMATERIAL ABSORBER FOR X-BAND APPLICATIONS

0202 electrical engineering, electronic engineering, information engineering 535 02 engineering and technology 7. Clean energy TK Electrical engineering. Electronics Nuclear engineering
DOI: 10.2528/pierm14052402 Publication Date: 2014-12-11T21:08:31Z
ABSTRACT
This paper presents the design, fabrication, and measurement of triple band metamaterial absorber at 8GHz, 10GHz and 12GHz which are in the X-band frequency range. The unit cell of the metamaterial consists of three concentric copper rings at difierent radii, printed on 0.8mm thick FR4 substrate in order to obtain triple resonant frequencies. The highly symmetrical ring structure in nature makes this absorber insensitive to any polarization state of incident electromagnetic (EM) waves for normal incident waves. The proposed structure is capable to operate at wide variations angle of incident wave. The simulated result shows that the triple-band metamaterial absorber achieves high absorbance for normal incident electromagnetic waves of 97.33%, 91.84% and 90.08% at 8GHz, 10GHz and 12GHz, respectively, when subjected to normal incident electromagnetic. With metamaterial absorber maintaining 50% of absorbance value, the corresponding full width half maximum (FWHM) are 5.61%, 2.90% and 2.33%. The operating angles in which the metamaterial structure can maintain 50% absorbance at TE mode and TM mode are 67 - and 64 - , respectively. The experimental result verifles that the absorber is well performed at three difierent resonant frequencies with absorbance greater than 80%.
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