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A universal electromagnetic energy conversion adapter based on a metamaterial absorber

机译:基于超材料吸收体的通用电磁能转换适配器

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摘要

On the heels of metamaterial absorbers (MAs) which produce near perfect electromagnetic (EM) absorption and emission, we propose a universal electromagnetic energy conversion adapter (UEECA) based on MA. By choosing the appropriate energy converting sensors, the UEECA is able to achieve near 100% signal transfer ratio between EM energy and various forms of energy such as thermal, DC electric, or higher harmonic EM energy. The inherited subwavelength dimension and the EM field intensity enhancement can further empower UEECA in many critical applications such as energy harvesting, photoconductive antennas, and nonlinear optics. The principle of UEECA is understood with a transmission line model, which further provides a design strategy that can incorporate a variety of energy conversion devices. The concept is experimentally validated at a microwave frequency with a signal transfer ratio of 96% by choosing an RF diode as the energy converting sensor.
机译:在产生近乎完美的电磁(EM)吸收和发射的超材料吸收器(MA)之后,我们提出了一种基于MA的通用电磁能转换适配器(UEECA)。通过选择合适的能量转换传感器,UEECA能够在EM能量和各种形式的能量(例如热能,DC电能或更高谐波的EM能量)之间实现接近100%的信号传输率。继承的亚波长尺寸和EM场强增强功能可进一步增强UEECA在许多关键应用中的能力,例如能量收集,光电导天线和非线性光学。可以通过传输线模型来理解UEECA的原理,该模型还提供了可以结合各种能量转换设备的设计策略。通过选择射频二极管作为能量转换传感器,该概念在微波频率下的信号传输率为96%的条件下得到了实验验证。

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