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MODULATION BANDWIDTH AND NOISE LIMIT OF PHOTOCONDUCTIVE GATES

机译:光电导栅极的调制带宽和噪声限值

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The modulation bandwidth and noise limit of a photoconductive sampling gate are studied by reducing the parasitic capacitance and leakage current of the sampling circuit using an integrated junction field-effect transistor (JFET) source follower. The modulation bandwidth of the photoconductive sampling gate is limited by the external parasitic capacitance, and its efficiency is found to saturate at a laser gating power of about 1 mW. It is determined that the noise of the photoconductive sampling gate is dominated by the photovoltaic current due to the gating laser amplitude fluctuation. A minimum noise level of 4 nV Hz(-1/2) has been measured, and an enhancement in signal-to-noise ratio by a factor of >45 has been achieved after the integration of the source follower with the photoconductive sampling gate. The JFET source follower serves to increase the modulation bandwidth of the photoconductive sampling gate by about 15 times and buffer the charge of the measured signal using its extremely high gate input impedance. The performance of the photoconductive sampling gate in regard to invasiveness and gating efficiency has been optimized, while a picosecond temporal resolution has been maintained and the signal-to-noise performance has been enhanced using a gating laser power as low as 10 mu W. References: 19
机译:通过使用集成结型场效应晶体管(JFET)源极跟随器降低采样电路的寄生电容和漏电流,研究了光电导采样门的调制带宽和噪声限值。光电导采样栅极的调制带宽受到外部寄生电容的限制,其效率在约1 mW的激光门控功率下饱和。确定光电导采样门的噪声由于门控激光振幅波动而以光伏电流为主。测得的最小噪声水平为4 nV Hz(-1/2),在将源跟随器与光电导采样门集成后,信噪比提高了>45倍。JFET源极跟随器用于将光电导采样栅极的调制带宽增加约15倍,并利用其极高的栅极输入阻抗缓冲被测信号的电荷。光电导采样门在侵入性和门控效率方面的性能得到了优化,同时保持了皮秒时间分辨率,并使用低至 10 μ W 的门控激光功率增强了信噪比性能。 [参考文献: 19]

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