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Dynamic Analysis of Cascaded Laser Power Converters for Simultaneous High-Speed Data Detection and Optical-to-Electrical DC Power Generation

机译:级联激光功率转换器的动态分析,用于同时高速数据检测和光电直流发电

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摘要

We analyze the dynamic behaviors of a novel device, i.e., cascaded high-speed laser power converters (LPCs), which can detect the direct-current (dc) component of an incoming high-speed optical data stream and efficiently convert its dc component to dc electrical power. By utilizing a p-type photoabsorption layer in our LPC, the problem of slow-motion holes can be eliminated, and only the electrons act as the active carriers. We can thus achieve high-speed performance with the LPC under forward-bias operation with a small electric field inside. Furthermore, according to our modeling and measurement results, there are a significant alternating-current capacitance reduction and an electron-trapping effect at the interface between the absorption and collector layers with a significant degradation in the carrier drift velocity. These become more serious with the increase in optical pumping power and forward-bias voltage and truly limit the net optical-to-electrical (O–E) bandwidth of the device. In order to overcome such a transient-time-limited bandwidth and further increase the maximum dc output voltage of the LPC, we connect two single LPCs in series (cascade). Error-free data detection of 10-Gb/s and an O–E dc power-generation efficiency of 21.1% can be achieved simultaneously at a wavelength of 850 nm by the use of such two cascaded LPCs.
机译:我们分析了一种新型设备的动态行为,即级联高速激光功率转换器(LPC),它可以检测传入的高速光数据流的直流(dc)分量并将其dc分量有效地转换为直流电源。通过在我们的LPC中利用p型光吸收层,可以消除慢速运动空穴的问题,而只有电子充当活性载流子。因此,我们可以通过LPC在正向偏置工作且内部电场较小的情况下实现高速性能。此外,根据我们的建模和测量结果,在吸收层和集电极层之间的界面处,交流电容量会显着降低,并且电子俘获效应会大大降低载流子漂移速度。随着光泵浦功率和正向偏置电压的增加,这些问题变得更加严重,并真正限制了设备的净光电(O–E)带宽。为了克服这种瞬态时间限制的带宽并进一步提高LPC的最大直流输出电压,我们串联连接了两个单个LPC(级联)。通过使用两个级联的LPC,可以在850 nm波长上同时实现10 Gb / s的无错误数据检测和21.1%的O–E dc发电效率。

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