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Terahertz generation mechanism in nano-grating electrode photomixers on Fe-doped InGaAsP

机译:纳米栅格电极光电混合器在Fe掺杂InGaasp中的太赫兹生成机制

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摘要

We report the generation mechanism associated with nano-grating electrode photomixers fabricated on Fe-doped InGaAsP substrates. Two different emitter designs incorporating nano-gratings coupled to the same broadband antenna were characterized in a continuous-wave terahertz (THz) frequency system employing telecommunications wavelength lasers for generation and coherent detection. The current-voltage characteristics and THz emission bandwidth of the emitters is compared for different bias polarities and optical polarisations. The THz output from the emitters is also mapped as a function of the position of the laser excitation spot for both continuous-wave and pulsed excitation. This mapping, together with full-wave simulations of the structures, confirms the generation mechanism to be due to an enhanced optical electric field at the grating tips resulting in increased optical absorption, coinciding with a concentration of the electrostatic field.
机译:我们报告与Fe掺杂的InGaAsP衬底上制造的纳米光栅电极光混合器相关的生成机理。在采用电信波长激光器进行产生和相干检测的连续波太赫兹(THz)频率系统中,对结合了与同一宽带天线耦合的纳米光栅的两种不同的发射器设计进行了表征。针对不同的偏置极性和光偏振,比较了发射器的电流-电压特性和THz发射带宽。对于连续波和脉冲激发,从发射器输出的太赫兹也被映射为激光激发点的位置的函数。该映射与结构的全波模拟一起,确认了生成机理是由于光栅尖端处的光电场增强而导致的光吸收增加,这与静电场的集中相吻合。

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