Subharmonic Mixing Using a Reflective Spatio-Temporally Modulated Metasurface

Zhan Wu, C. Scarborough, A. Grbic
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Abstract

A reflective, dual-polarized, space-time metasurface with subwavelength unit cells (d0 = λ0/5) is reported. Each column of unit cells on the metasurface can be independently, temporally modulated, allowing space-time modulation along one axis. The time-modulation of adjacent columns is staggered to establish a desired modulation wavenumber. A homogenized model of the metasurface is proposed that includes the discretization of the spatial modulation. Compared to the continuous spatial modulation commonly assumed in earlier works, the discretized modulation allows new phenomena such as subharmonic mixing. Specifically, when the reflection phase is a sawtooth function in time, subharmonic frequency translation can be achieved without additional filtering and mixing circuitry. Measurement results validating the theoretical findings are presented at 10 GHz.
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利用反射时空调制超表面的次谐波混频
报道了一种具有亚波长单位晶元(d0 = λ0/5)的反射双偏振时空超表面。超表面上的每一列单位细胞都可以独立地进行时间调制,从而允许沿一个轴进行时空调制。相邻列的时间调制是交错的,以建立所需的调制波数。提出了包含空间调制离散化的超表面均匀化模型。与早期研究中通常假设的连续空间调制相比,离散调制允许出现次谐波混频等新现象。具体来说,当反射相位在时间上是锯齿函数时,无需额外的滤波和混频电路即可实现次谐波频率转换。在10ghz频段给出了验证理论发现的测量结果。
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