ENZ metasurface sandwiched layer for multi-angle transmission of TE and TM polarization waves
A metasurface, multi-angle technology, applied in the direction of electrical components, antennas, etc., to achieve the effect of simple structure, efficient transmission, and easy realization
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Embodiment 1
[0029] Embodiment 1, ENZ metamaterial substrate thickness t = 2mm metasurface interlayer.
[0030] This example includes two ENZ metamaterial substrates 1 and a periodic complementary aperture resonator plate 2. The periodic complementary aperture resonator plate 2 determines the transmission frequency of TE and TM polarized waves penetrating the ENZ metamaterial, and its transmission frequency f is given by the formula Determined, where L is the average of the sum of the lengths of the two resonant rings, ε eff is the equivalent dielectric constant of the microstrip dielectric plate. Among them, the thickness t of the metamaterial substrate 1 is 2mm, the relative permittivity is 0.01, the loss tangent is 0, and the distance d from the periodic complementary aperture resonator plate 2 is 2mm, the thickness t of the metamaterial substrate 1, and its relationship with the periodic The distance d of the complementary aperture resonator affects the transmission frequency and ban...
Embodiment 2
[0031] Embodiment 2, ENZ metamaterial substrate thickness t=1mm metasurface interlayer.
[0032] The structure of this instance is the same as that of instance 1, and the following parameters remain unchanged:
[0033] The relative permittivity of the metamaterial substrate 1 is 0.01, and the loss tangent is 0;
[0034] The thickness e of the dielectric substrate of the periodic complementary aperture resonator plate is 0.5 mm, and the dielectric constant is 2.65;
[0035] The long side a=8mm of metal nugget 3, wide side h=8mm;
[0036] The width g of the two C-ring gaps is 0.5mm, the opening distance f is 2mm, and the distance b between the larger C-ring gap on the outside and the center is 2.5mm, and the distance between the smaller C-ring gap and the center on the inside c is 1.5 mm.
[0037] In this example, only the following parameters are changed:
[0038] The thickness t of the metamaterial substrate 1 is 1 mm;
[0039] The distance d between the metamaterial subs...
Embodiment 3
[0040] Embodiment 3, a metasurface with an ENZ metamaterial substrate thickness t=1.5mm.
[0041] The structure and most of the parameters of this example are the same as Example 1, only the following parameters have been changed:
[0042]The thickness t of the metamaterial substrate 1 is 1.5mm;
[0043] The distance d between the metamaterial substrate 1 and the periodic complementary aperture resonator plate 2 is 1 mm.
[0044] The technical effects of the present invention will be further described in detail below in combination with the results of simulation experiments.
[0045] 1. Simulation conditions:
[0046] The present invention uses CST Microwave Studio electromagnetic simulation software to carry out full-wave simulation on the ENZ metamaterial substrate and the relationship between the transmission coefficient and incident angle of TE and TM polarized electromagnetic waves under the present invention.
[0047] 2. Simulation content:
[0048] Simulation 1, sim...
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