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Resonant Tunneling Diode (RTD) Terahertz Active Transmission Line Oscillator with Graphene-Plasma Wave and Two Graphene Antennas

机译:具有石墨烯 - 等离子波和两个石墨烯天线的谐振隧穿二极管(RTD)太赫兹有源传输线振荡器

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摘要

This study describes the design of a resonant tunneling diode (RTD) oscillator (RTD oscillator) with a RTD-gated-graphene-2DEF (two dimensional electron fluid) and demonstrates the functioning of this RTD oscillator through a transmission line simulation model. Impedance of the RTD oscillator changes periodically when physical dimension of the device is of considerable fraction of the electrical wavelength. As long as impedance matching is achieved, the oscillation frequency is not limited by the size of the device. An RTD oscillator with a graphene film and negative differential resistance (NDR) will produce power amplification. The positive electrode of the DC power supply is modified and designed as an antenna. So, the reflected power can also be radiated to increase RTD oscillator output power. The output analysis shows that through the optimization of the antenna structure, it is possible to increase the RTD oscillator output to 22 mW at 1.9 THz and 20 mW at 6.1 THz respectively. Furthermore, the RTD oscillator has the potential to oscillate at 50 THz with a matching antenna.
机译:该研究描述了具有RTD门石墨烯-2DEF(二维电子流体)的谐振隧道二极管(RTD)振荡器(RTD振荡器)的设计,并通过传输线仿真模型演示该RTD振荡器的功能。当器件的物理尺寸具有相当大的电波长分数时,RTD振荡器的阻抗周期性地改变。只要实现阻抗匹配,振荡频率不受设备尺寸的限制。具有石墨烯膜和负差分电阻(NDR)的RTD振荡器将产生功率放大。 DC电源的正极被修改和设计为天线。因此,还可以辐射反射功率以增加RTD振荡器输出功率。输出分析表明,通过对天线结构的优化,可以分别将RTD振荡器输出到22mW,分别为6.1至6六个。此外,RTD振荡器具有以匹配的天线在50至THz上振荡的可能性。

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