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首页> 外文期刊>Physical review >Demonstration of enhanced broadband unidirectional electromagnetic radiation enabled by a subwavelength profile leaky anisotropic zero-index metamaterial coating
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Demonstration of enhanced broadband unidirectional electromagnetic radiation enabled by a subwavelength profile leaky anisotropic zero-index metamaterial coating

机译:演示了由亚波长分布泄漏各向异性零折射率超材料涂层带来的增强型宽带单向电磁辐射

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摘要

In this paper, we report a technique for creating broadband unidirectional electromagnetic radiation with a grounded nonmagnetic anisotropic zero-index metamaterial coating. We demonstrate that the leaky modes supported by the finite sized coating structure can be exploited to create a unidirectional radiation device with a subwavelength thickness of only 0.12λ. Numerical simulations and experimental characterization of the metamaterial-enabled radiator confirm the physical mechanisms governing its performance, showing a stable directive beam with an over fivefold radiation power enhancement at broadside. Due to the resulting nonmagnetic material properties, this approach provides a new path to highly efficient, small footprint, low profile, and broadband directive radiation devices for microwave and potentially even optical wavelength applications.
机译:在本文中,我们报告了一种使用接地的非磁性各向异性零折射率超材料涂层创建宽带单向电磁辐射的技术。我们证明了可以利用有限尺寸涂层结构所支持的泄漏模式来创建亚波长厚度仅为0.12λ的单向辐射装置。启用超材料的散热器的数值模拟和实验表征证实了控制其性能的物理机制,显示出稳定的定向光束,其宽边辐射功率提高了五倍以上。由于所产生的非磁性材料特性,这种方法为微波,甚至可能是光波长应用的高效,小尺寸,薄型和宽带定向辐射设备提供了一条新途径。

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