无需直流电源和馈电电路的功率调制可重构非线性等离子器件

Wen Yi Cui, Xinxin Gao, Jingjing Zhang, Yu Luo, Tie Jun Cui
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引用次数: 0

摘要

大功率电磁波可以通过整流和克尔效应直接调制非线性变容二极管的参数,而无需依赖外部电源。基于这一原理,我们提出了一种基于变容二极管加载的欺骗性表面等离子体极化(SSPP)波导的功率调制可重构非线性器件,无需使用直流电源或馈电电路。提高输入功率水平会降低变容二极管的有效电容,从而导致 SSPP 波导的截止频率发生蓝移。利用这一特性,可以根据信号功率实现输入信号的开关。另一方面,低功率信号的传输状态可以通过同时输入另一个独立的高功率电磁波来控制。提高控制波的功率可使低功率信号在更宽的带宽内从关闭状态切换到开启状态。实验结果表明,功率调制可重构 SSPP 器件性能卓越。这种方法可以降低系统复杂性,为可重构全无源多功能器件和系统提供灵感。
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Power-modulated reconfigurable nonlinear plasmonic devices without DC power supply and feed circuit
High-power electromagnetic (EM) waves can directly modulate the parameters of nonlinear varactor diodes through the rectification and Kerr effects without relying on external sources. Based on this principle, we propose a power-modulated reconfigurable nonlinear device based on spoof surface plasmon polariton (SSPP) waveguide loaded by varactor diodes, without applying DC power supply or feed circuit. Increasing the input power level reduces the effective capacitance of the varactor diode, leading to a blueshift in the cutoff frequency of the SSPP waveguide. This feature can be employed to realize the switching on/off of the input signal depending on the signal power. On the other hand, the transmission state of a low-power signal can be controlled by inputting another independent high-power EM wave simultaneously. Increasing the power of the control wave will enable the low-power signal within a wider bandwidth switched from off to on states. Experimental results are presented to show the excellent performance of the power-modulated reconfigurable SSPP device. This method can reduce the system complexity and provide inspiration for reconfigurable all-passive multifunctional devices and systems.
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