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Time-domain numerical modeling of terahertz receivers based on photoconductive antennas

机译:基于光电导天线的太赫兹接收机的时域数值建模

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We present here a simulator that solves the main semiconductor charge and transport equations coupled to Maxwell equations to study receivers based on photoconductive antennas (R-PCAs). Making use of this tool we were able to correctly characterize the operation of these antennas. In doing so, we compared simulations with the results of the semi-empirical expression I-THz (t) proportional to sigma(c) (t) * ETHz(t) employed to evaluate the detected photocurrent by means of the convolution between the photoconductivity in the receiver and the electric field linked to the emitter antenna. We were able to accurately reproduce experimental data with our simulation tool. These kinds of tools are essential to model photoconductive antennas, a fundamental step needed for the development of terahertz time-domain spectroscopy applications based on PCAs. (C) 2015 Optical Society of America
机译:我们在这里提供一个模拟器,该模拟器可以解决与Maxwell方程耦合的主要半导体电荷和输运方程,以研究基于光电导天线(R-PCA)的接收器。使用此工具,我们能够正确表征这些天线的工作情况。在此过程中,我们将仿真与半经验表达式I-THz(t)的结果进行了比较,该半经验表达式与sigma(c)(t)* ETHz(t)成比例,用于通过光导率之间的卷积来评估检测到的光电流在接收器中,电场与发射天线相连。我们能够使用我们的仿真工具准确地重现实验数据。这些工具对于光电导天线建模至关重要,这是开发基于PCA的太赫兹时域光谱应用的基本步骤。 (C)2015年美国眼镜学会

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