2017 Volume 34 Issue 8
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Mohammad Hosein Fakheri, Hooman Barati, Ali Abdolali. 2017: Carpet Cloak Design for Rough Surfaces, Chinese Physics Letters, 34(8): 46-50. doi: 10.1088/0256-307X/34/8/084101
Citation: Mohammad Hosein Fakheri, Hooman Barati, Ali Abdolali. 2017: Carpet Cloak Design for Rough Surfaces, Chinese Physics Letters, 34(8): 46-50. doi: 10.1088/0256-307X/34/8/084101

Carpet Cloak Design for Rough Surfaces

  • Available Online: 30/12/2017
  • Conventional carpet cloak structures have been utilized to conceal the objects located on a planar perfect electric conductor surface.We systematically investigate hiding arbitrarily shaped objects on a rough surface,as a more general and practical scenario.In addition,the required cloak is designed considering different boundary conditions for the surface beneath the object,despite the previous studies.To achieve an invisiMlity cloak,taking advantage of linear coordinate transformation,a simple homogeneous material is obtained to realize the cloak structure,facilitating the fabrication processes.Numerical simulations validate the performance of the proposed cloaking method.Therefore,the proposed structure is capable of cloaking in more general and complicated scenarios.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Carpet Cloak Design for Rough Surfaces

Abstract: Conventional carpet cloak structures have been utilized to conceal the objects located on a planar perfect electric conductor surface.We systematically investigate hiding arbitrarily shaped objects on a rough surface,as a more general and practical scenario.In addition,the required cloak is designed considering different boundary conditions for the surface beneath the object,despite the previous studies.To achieve an invisiMlity cloak,taking advantage of linear coordinate transformation,a simple homogeneous material is obtained to realize the cloak structure,facilitating the fabrication processes.Numerical simulations validate the performance of the proposed cloaking method.Therefore,the proposed structure is capable of cloaking in more general and complicated scenarios.

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