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Dual-gate organic phototransistor with high-gain and linear photoresponse

机译:具有高增益和线性光响应的双栅极有机光电晶体管

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摘要

The conversion of light into electrical signal in a photodetector is a crucial process for a wide range of technological applications. Here we report a new device concept of dual-gate phototransistor that combines the operation of photodiodes and phototransistors to simultaneously enable high-gain and linear photoresponse without requiring external circuitry. In an oppositely biased, dual-gate transistor based on a solution-processed organic heterojunction layer, we find that the presence of both n- and p-type channels enables both photogenerated electrons and holes to efficiently separate and transport in the same semiconducting layer. This operation enables effective control of trap carrier density that leads to linear photoresponse with high photoconductive gain and a significant reduction of electrical noise. As we demonstrate using a large-area, 8 × 8 imaging array of dual-gate phototransistors, this device concept is promising for high-performance and scalable photodetectors with tunable dynamic range.
机译:在光电探测器中,将光转换为电信号是广泛技术应用中的关键过程。在这里,我们报告了一种双栅光电晶体管的新器件概念,该器件结合了光电二极管和光电晶体管的操作,从而无需外部电路即可同时实现高增益和线性光响应。在基于溶液处理的有机异质结层的相反偏置的双栅晶体管中,我们发现n型和p型沟道的存在使光生电子和空穴都能够有效地分离并在同一半导体层中传输。此操作可以有效控制陷阱载流子密度,从而导致线性光响应,并具有高光电导增益并显着降低电噪声。正如我们使用双栅极光电晶体管的大面积8××8成像阵列所展示的那样,该器件的概念对于具有可调动态范围的高性能和可扩展光电探测器很有希望。

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