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Numerical investigation of saturation behaviors in photoconductive antennas under high bias conditions

机译:高偏置条件下光电导天线饱和特性的数值研究

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A photoconductive antenna (PCA) is modeled using a higher order solution derived from the Boltzmann's equation to accurately predict anomalous behaviors in this system. In the case concerning the application of high bias fields, photoexcited carriers gain sufficient energies, so that they become hot carriers. Moreover, screening fields in PCAs are numerically investigated in the first picoseconds subsequent to the excitation using hot-carriers effects. To explore another exotic phenomenon in a PCA, its driving photocurrent is decomposed into DC and THz components. Then, the saturation behavior of the THz component peak and the sublinear dependence of the DC component with respect to an externally applied bias are numerically investigated. Furthermore, depending on the accumulation of photoexcited carriers, velocity overshoot phenomenon may occur in the driving photocurrent against the applied bias. These phenomena cannot be predicted by the conventional drift-diffusion model. To simplify the analysis of PCAs, a time-dependent equivalent circuit model is proposed for describing the associated operational principles. Finally, using a coherent detection scheme and the circuit model, it will be shown that owing to the screening fields, the THz power saturates with respect to the applied laser power.
机译:光电导天线(PCA)使用从Boltzmann方程导出的高阶解进行建模,以准确预测该系统中的异常行为。在施加高偏压场的情况下,光激发载流子获得足够的能量,因此它们成为热载流子。此外,在使用热载流子效应激发后的最初皮秒内,对PCA中的屏蔽场进行了数值研究。为了探索PCA中的另一种奇异现象,将其驱动光电流分解为DC和THz分量。然后,数值研究了太赫兹分量峰值的饱和行为和直流分量相对于外部施加偏置的亚线性依赖性。此外,取决于光激发载流子的积累,驱动光电流中可能会由于施加的偏压而发生速度过冲现象。传统的漂移扩散模型无法预测这些现象。为了简化PCA的分析,提出了时变等效电路模型来描述相关的工作原理。最后,使用相干检测方案和电路模型,将显示由于屏蔽场,相对于所施加的激光功率,太赫兹功率饱和。

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