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A thyristor-based photoreceiver based on the dual-channel double-heterostructure optoelectronic switch

机译:基于双通道双异质结构光电开关的基于晶闸管的光接收器

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摘要

A new approach to photoreceiver design is described based on the functionality of an optoelectronic thyristor. The receiver eliminates the transimpedance amplifier and the decision circuit by utilizing the internal gain of the thyristor and its nonlinear thresholding property. The sensitivity is determined by the shot noise on the input signal to be 360 photons per bit at a bit-error rate of 10-9. The speed of the photoreceiver is determined by the switching times of the thyristor. An output voltage signal from 0 to 1.5 V is obtained with switch on and off times of 12.5 ps and input photocurrent densities of 104 A/cm2. The switch off time is equally as fast as the switch on due to the absence of stored charge in the modulation doped structure. The key to the high speed is the utilization of the third and fourth terminal contacts to the thyristor and the integration of the biasing transistors, which control the switching currents. An input optical signal of 0.5 mW will achieve this bandwidth in a device size of 0.2 Μm×12.5 Μm.
机译:基于光电晶闸管的功能,描述了一种新的光接收器设计方法。接收器通过利用晶闸管的内部增益及其非线性阈值特性,消除了跨阻放大器和判决电路。灵敏度由输入信号上的散粒噪声确定,误码率为10-9时,每比特为360个光子。受光器的速度取决于晶闸管的开关时间。接通和断开时间为12.5 ps,输入光电流密度为104 A / cm2时,可获得0至1.5 V的输出电压信号。由于在调制掺杂结构中不存在存储的电荷,因此关闭时间与打开时间一样快。高速的关键在于晶闸管的第三和第四端子触点的使用以及控制开关电流的偏置晶体管的集成。 0.5 mW的输入光信号将在0.2微米×12.5微米的器件尺寸中实现此带宽。

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