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Stacked photo-sensing devices based on SiC alloys A non-pixelled architecture for imagers and demultiplexing devices

机译:基于SiC合金的堆叠式光敏器件一种用于成像器和解复用器的非像素化架构

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摘要

In this review paper different designs based on stacked p-i'-n-p-i-n heterojunctions are presented and compared with the single p-i-n sensing structures. The imagers utilise self-field induced depletion layers for light detection and a modulated laser beam for sequential readout. The effect of the sensing element structure, cell configurations (single or tandem), and light source properties (intensity and wavelength) are correlated with the sensor output characteristics (light-to-dark sensivity, spatial resolution, linearity and S/N ratio). The readout frequency is optimized showing that scans speeds up to 104 lines per second can be achieved without degradation in the resolution. Multilayered p-i'-n-p-i-n heterostructures can also be used as wavelength-division multiplexing /demultiplexing devices in the visible range. Here the sensor element faces the modulated light from different input colour channels, each one with a specific wavelength and bit rate. By reading out the photocurrent at appropriated applied bias, the information is multiplexed or demultiplexed and can be transmitted or recovered again. Electrical models are present to support the sensing methodologies.
机译:在这篇综述论文中,提出了基于堆叠的p-i'-n-p-i-n异质结的不同设计,并将其与单个p-i-n感测结构进行了比较。成像器利用自电场感应的耗尽层进行光检测,并利用调制的激光束进行顺序读出。传感元件结构,单元配置(单个或串联)和光源特性(强度和波长)的影响与传感器输出特性(明暗灵敏度,空间分辨率,线性度和信噪比)相关。 。读出频率经过优化,表明可以实现每秒104行的扫描速度而不会降低分辨率。多层p-i'-n-p-i-n异质结构也可用作可见光范围内的波分复用/解复用设备。在这里,传感器元件面对来自不同输入颜色通道的调制光,每个颜色通道具有特定的波长和比特率。通过在适当的施加偏压下读出光电流,信息将被多路复用或多路分解,并可再次传输或恢复。存在电气模型以支持感测方法。

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