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Extraction of Nonlinear Parameters of Dispersive Avalanche Photodiode Using Pulsed RF Measurement and Quasi-DC Optical Excitation

机译:脉冲射频测量和准直流光激发提取色散雪崩光电二极管非线性参数

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摘要

A measurement system using a pulsed RF signal is presented for extraction of nonlinear parameters of a large-signal model (LSM) of a dispersive avalanche photodiode. Nonlinear model of the avalanche photodiode was considered as two-port network and vector reflection measurement was carried out using a microwave transition analyzer in pulsed RF mode in conjunction with synchronized pulsed optical stimulus on the photodiode. Square-wave optical stimulus of 5-(mu)s width (full width at half maximum) and 5-kHz pulse-repetition frequency (quasi-dc) were synchronized with the pulsed RF excitation using a synchronization circuit. High-frequency dispersion effects were taken into consideration for deriving the current through the photodiode and the theoretical background was given for the derivation of optical and bias-dependent parameters. Nonlinear parameters of LSM of the avalanche photodiode were extracted from the small-signal vector reflection measurement at different bias points and optical conditions. Thermal impedance of the device limits the continuous-wave measurement up to 0.1 mW of optical power, whereas when using the current method, it was possible to characterize the device up to 1.3 mW of peak optical power.
机译:提出了一种使用脉冲RF信号的测量系统,用于提取色散雪崩光电二极管大信号模型(LSM)的非线性参数。将雪崩光电二极管的非线性模型视为两端口网络,并使用微波跃迁分析仪在脉冲RF模式下结合光电二极管上的同步脉冲光学激励,进行矢量反射测量。使用同步电路,将宽度为5μs(半峰全宽)和5 kHz脉冲重复频率(准直流)的方波光激励与脉冲RF激励进行同步。考虑了高频色散效应,以得出通过光电二极管的电流,并为推导光学和偏置相关参数提供了理论背景。从不同偏置点和光学条件下的小信号矢量反射测量中提取了雪崩光电二极管LSM的非线性参数。器件的热阻抗将连续波测量限制在光功率的0.1 mW之内,而使用当前方法时,有可能表征峰值光功率的1.3 mW的器件。

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