A tunable three-dimensional thermal invisibility cloak based on multilayer graphene ring layers
A multi-layer graphene, layer graphene technology, applied in optics, instruments, nonlinear optics, etc., can solve the problem that the thermal stealth function is not tunable, cannot be turned on, etc., to improve computer performance, save energy, extend the The effect of camouflage time
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[0028] First, an internal support shell 5 is formed on the substrate 1 by a material growth process, as shown in Figure 2(a);
[0029] Then, through the material growth process and the mask process, the designed graphene ring layers are stacked layer by layer on the outer surface of the substrate 1 and the inner support shell 5 from bottom to top to realize the N-layer graphene surface ring layer structure 2, such as Shown in accompanying drawing 2 (b). Among them, the design of the graphene surface ring layer and the internal support shell can use algorithms such as finite time domain difference method and finite element method.
[0030] Corresponding to each graphene ring layer, the inner supporting shell is drilled with small holes 6 . A wire 7 is installed in the small hole, one end of the wire is connected to the graphene ring layer, and the other end passes through the control unit 8 and the ground wire 10 of the energy supply unit 9. By manipulating the control unit 8,...
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