首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >High-efficiency real-time waveform modulator for free space waves based on dispersion engineering of spoof surface plasmon polaritons
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High-efficiency real-time waveform modulator for free space waves based on dispersion engineering of spoof surface plasmon polaritons

机译:基于欺骗曲面等离子体极化子分散工程的自由空间波的高效实时波形调制器

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摘要

Limited by causality, strong dispersion is always accompanied by a high loss for natural materials, so it is very hard to obtain strong dispersion simultaneously with low loss in a narrow band. The nonlinear dispersion curve of spoof surface plasmon polaritons (SSPPs) provides rich potential for dispersion engineering. By tailoring the asymptotic region of the SSPP dispersion curve, a good compromise can be made between strong dispersion and low loss to obtain a dispersive group delay time (GDT). With a delicate GDT design, signals in the free space can be modulated intentionally with high efficiency. As an example, we demonstrated a waveform modulator operating in an X band. Both the simulation and experiment show that the modulator can produce time delays that are linearly dependent on frequency in a 50 MHz frequency band. Our finding may have applications in radar invisibility, analog signal processing, etc.
机译:受因果区的限制,强大的分散始终伴随着天然材料的高损失,因此很难在窄带中同时获得强烈的分散。 欺骗表面等离子体极性官(SSPPS)的非线性分散曲线提供了富有的分散工程电位。 通过定制SSPP色散曲线的渐近区域,可以在强的分散和低损失之间进行良好的折衷,以获得分散组延迟时间(GDT)。 采用精致的GDT设计,可用空间中的信号以高效率有意地调制。 作为示例,我们展示了在X频带中操作的波形调制器。 模拟和实验都表明调制器可以产生线性地取决于50MHz频带中的频率的时间延迟。 我们的发现可能在雷达隐形,模拟信号处理等中具有应用。

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