Tunable microwave-absorbing artificial electromagnetic metamaterial based on topology/graphene
A technology of artificial electromagnetics and topological materials, applied in nonlinear optics, instruments, optics, etc.
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example 1
[0028] First, a material growth process is used to form a multi-layer structure (metal layer 3-topological material or graphene layer 4-metal layer 3-oxide layer 5) 2 on the substrate 1, as attached figure 2 (a) Shown.
[0029] Secondly, deposit SiO on the multilayer structure 2 2 The film is used as a mask 6, as attached figure 2 (b) Shown.
[0030] Then, the designed periodic resonant unit array samples are converted to the mask through the mask process, as shown in the attached figure 2 (c) Shown. Among them, the design of the structure can use algorithms such as finite time domain difference method and finite element method.
[0031] Then, through an etching process, a periodic resonant unit array 7 is prepared on the 2 material, as attached figure 2 (d) Shown.
[0032] Finally, the mask 6 is removed to obtain a tunable absorbing artificial electromagnetic metamaterial 8, as attached figure 2 (e) Shown. Which is based on N (N> 1) The first structure of multi-layer structure ...
example 2
[0034] First, a material growth process is used to form a multi-layer structure (metal layer 3-dielectric layer 10-metal layer 3) 2 on the substrate 1, as shown in the attachment image 3 (a) Shown.
[0035] Secondly, deposit SiO on the multilayer structure 2 2 The film is used as a mask 6, as attached image 3 (b) Shown.
[0036] Then, the designed periodic resonant unit samples are transferred to the mask through the mask process, as shown in the attached image 3 (c) Shown. Among them, the structure design can use finite time domain difference method, finite element method and other algorithms.
[0037] Then, through an etching process, a periodic resonant unit array 7 is prepared on the 2 material, as attached image 3 (d) shown
[0038] Finally, the mask 6 is removed, and a graphene or topological material layer 4 is deposited on 2 to obtain a tunable absorbing artificial electromagnetic metamaterial 8, as attached image 3 (e) Shown. Which is based on N (N> 1) The second struct...
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