2021
DOI: 10.1007/s11468-021-01389-7
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Ultra-wideband Transmissive Water-Based Metamaterial Absorber with Wide Angle Incidence and Polarization Insensitivity

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Cited by 21 publications
(9 citation statements)
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“…Therefore, this section first presents the dynamic modulation of VO 2 ‐based BMAs and then discusses BMAs with thermally tunable properties based on GST, [ 481–489 ] indium antimonide (InSb), [ 490,491 ] strontium titanate (STO), [ 492,493 ] nanocomposites, [ 494 ] and water. [ 452,495–499 ]…”
Section: Tunable or Reconfigurable Broadband Metamaterials Absorbersmentioning
confidence: 99%
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“…Therefore, this section first presents the dynamic modulation of VO 2 ‐based BMAs and then discusses BMAs with thermally tunable properties based on GST, [ 481–489 ] indium antimonide (InSb), [ 490,491 ] strontium titanate (STO), [ 492,493 ] nanocomposites, [ 494 ] and water. [ 452,495–499 ]…”
Section: Tunable or Reconfigurable Broadband Metamaterials Absorbersmentioning
confidence: 99%
“…Besides, a 3D structured BMA based on water substrate and metallic metamaterials was designed, [ 498 ] which absorbs more than 90% in the range of 8.3–21.0 GHz and possesses thermally tunable performance due to the presence of water. A transmissive water‐based MA fabricated by 3D printing was further demonstrated, [ 499 ] which has more than 90% absorption in the frequency range of 6.5–21.4 GHz and is thermally tunable when the temperature is varied from 10 to 60 °C.…”
Section: Tunable or Reconfigurable Broadband Metamaterials Absorbersmentioning
confidence: 99%
See 1 more Smart Citation
“…In recent years, many efforts have been made to integrate the two properties of high transparency and high microwave absorption [12][13][14][15][16][17][18][19][20][21][22]. As an extensive resource on the Earth, water has the special characteristics of a large dielectric constant and good dispersion characteristics, which make it have a high dielectric loss to electromagnetic waves in a wide frequency band, and water is transparent in the range of light.…”
Section: Introductionmentioning
confidence: 99%
“…Water, as an ideal light transmitting material in nature, shows the intrinsic ability of microwave loss, and various complex three-dimensional meta-structure are designed to obtain transparent broadband absorber. [22][23][24][25] Water can be designed into different types of period resonators to stimulate multiple resonant peaks, 26,27) which could obtain broadband absorbing performance with reduced thickness. Furthermore, with optimized designed water resonators, the high resistive film could be implemented as metasurface to reduce the total thickness of the absorber, which would further improve the visible light transmittance.…”
mentioning
confidence: 99%