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首页> 外文期刊>Journal of Applied Physics >Reduction of scattering using thin all-dielectric shells designed by stochastic optimizer
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Reduction of scattering using thin all-dielectric shells designed by stochastic optimizer

机译:使用由随机优化器设计的薄全介电壳来减少散射

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Adaptive differential evolution method has been used for optimization of all-dielectric multilayer coatings in order to reduce total scattering from spherical targets. The optimal refractive index profiles have been found for various sizes of targets and thicknesses of coatings. Few profile types that appear to be optimal for various geometrical parameters have been identified. Scattering of the target with diameter of 0.75 λ has been reduced by 85% using 0.16 λ thick coating formed by isotropic dielectric materials. For larger targets, scattering reduction becomes smaller, but it still reaches 50% for targets with the diameter of 1.5 λ. The obtained designs provide a route to implement cloaking without the use of magnetic and anisotropic metamaterials.
机译:自适应差分进化方法已用于优化全介电多层涂层,以减少从球形靶材产生的总散射。对于各种尺寸的靶材和涂层厚度,已经找到了最佳的折射率分布。几乎没有发现对于各种几何参数最佳的轮廓类型。使用由各向同性介电材料形成的0.16λ厚涂层,可将直径0.75λ的靶材散射降低85%。对于较大的目标,散射减小会变小,但对于直径为1.5λ的目标,散射减小仍将达到50%。获得的设计提供了一种在不使用磁性和各向异性超材料的情况下实现隐身的途径。

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