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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Two-dimensional coding phase gradient metasurface for RCS reduction
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Two-dimensional coding phase gradient metasurface for RCS reduction

机译:用于RCS减少的二维编码相位梯度元表面

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A two-dimensional (2D) coding phase gradient metasurface (CPGM) is proposed for radar cross section (RCS) reduction in this work. The 2D phase gradient super cell is employed to serve as the coding element. The primary pattern of the coding element will be modulated by the designed 2D phase gradient. Thus, a more flexible method of scattering manipulation will be achieved by both the 2D phase gradient and coding sequences. The specific scattering patterns of the 2D CPGM under the modulation of phase gradient and coding sequence were analyzed. A controllable backward diffusion scattering coding phase gradient metasurface was realized based on Pancharatnam-Berry phase by modulating both the phase gradient and coding sequence. Both simulated and measured results demonstrate its excellent performance on RCS reduction.
机译:提出了一种二维(2D)编码相位梯度元表面(CPGM),用于减少这项工作的雷达横截面(RCS)。 使用2D相梯度超级电池用作编码元件。 编码元件的主要模式将由所设计的2D相位梯度调制。 因此,通过2D相位梯度和编码序列来实现更灵活的散射操纵方法。 分析了在相位梯度和编码序列调制下的2D CpGM的特定散射图案。 通过调制相位梯度和编码序列来实现基于Pancharatnam-Berry阶段的可控后向扩散散射编码相位梯度元表面。 模拟和测量结果都展示了RCS减少的优异性能。

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