Metasurface cloaks for large cylindrical cluster configurations
Samel Arslanagić, Alexander B. Yakovlev
Abstract
Samel Arslanagić, Alexander B. Yakovlev
Abstract
Here, we investigate the performance of metasurfaces used for cloaking of cluster configurations formed by different arrangements of multiple dielectric cylinders and excited by an electric line source. While a suitably designed metasurface can be used to effectively cloak isolated electrically small cylinders, we demonstrate that even electrically large clusters of such particles can be cloaked by covering its constituent cylinders with the metasurface cloaks. This holds for densely packed cylinders due to significantly reduced coupling by the presence of the cloaks. The results may be of great potential for cloaking of large objects by integrating the metasurface elements into the object.
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Here, we investigate the performance of metasurfaces used for cloaking of cluster configurations formed by different arrangements of multiple dielectric cylinders and excited by an electric line source. While a suitably designed metasurface can be used to effectively cloak isolated electrically small cylinders, we demonstrate that even electrically large clusters of such particles can be cloaked by covering its constituent cylinders with the metasurface cloaks. This holds for densely packed cylinders due to significantly reduced coupling by the presence of the cloaks. The results may be of great potential for cloaking of large objects by integrating the metasurface elements into the object.
Key concepts: Cloaking, Cloak, Cluster (spacecraft), Physics, Metamaterial, Dielectric, Coupling (piping), Optics