研究了纳米电极数量和长度对太赫兹光电混合器性能的影响

Reiam Al-Mudhafar, Hussein Jawad
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摘要

摘要:采用光混合技术的连续波(CW)太赫兹(THz)发射器具有明显的特点,但其辐射输出功率相对较低。因此,在器件的光有源区域内采用纳米级电极是提高光电混合器发射体性能的有效途径之一。由于银纳米线的纳米尺寸和良好的导电性,它们已被用作太赫兹发射极。纳米线表面激发的表面等离子体激元波增强了入射激发信号。因此,与传统的Ag-NW相比,基于Ag-NW的光电混合器显着表现出更高的太赫兹输出信号。本文利用计算机仿真技术(CST) Studio Suite,研究了Ag-NWs尺寸和数量对入射光场的影响。仿真结果表明,增加Ag-NWs长度与SPP传播长度之比对入射场增量有显著影响,因为它可以减少SPP传播损失。Ag-NWs数量和长度的增加可使活性区在较长激发波长(850 nm)处的电场增加1.5倍。由于这一增量,太赫兹输出功率和转换效率预计将提高五倍
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of nanoelectrodes number and length on enhancing the THz photomixer performance
Abstract: Despite the distinct features of the continuous wave (CW) Terahertz (THz) emitter using photomixing technique, it suffers from the relatively low radiation output power. Therefore, one of effective ways to improve the photomixer emitter performance was using nanodimensions electrodes inside the optical active region of the device. Due to the nanodimension sizes and good electrical conductivity of silver nanowires (Ag-NWs), they have been exploited as THz emitter electrodes. The excited surface plasmon polariton waves (SPPs) on the surface of nanowire enhances the incident excitation signal. Therefore, the photomixer based Ag-NW compared to conventional one significantly exhibits higher THz output signal. In this work, the effect of Ag-NWs dimensions and number on the incident optical field is investigated by utilizing the Computer Simulation Technology (CST) Studio Suite. The simulation results show that increasing Ag-NWs length to SPP propagation length ratio plays a significant role on the incident field increment due to its effect on reducing the SPP propagation losses. The increment of Ag-NWs number and length in the nanoelectrodes based photomixer can contribute to increase the electric field in the active region by 1.5 times at the longer excitation wavelength (850 nm). As a result of this increment, the THz output power and the conversion efficiency are expected to be enhanced by a factor of five
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