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Development of noncryogenic cooled carbon nanotube-based infrared focal plane array with integrated readout circuitry

机译:具有集成读出电路的基于非低温冷却碳纳米管的红外焦平面阵列的开发

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Infrared (IR) detectors are enormously important for various applications including medical diagnosis, night vision etc. The current bottleneck of high-sensitive IR detectors is the requirement of cryogenic cooling to reduce the noise. Carbon nanotubes (CNTs) exhibit low dark current which allows CNTs to work without cooling. This paper presents the development of noncryogenic cooled IR focal plane array (FPA) using CNTs. The FPA consists of an array of CNTbased IR detectors which are sensitive to IR signal at room temperature. The CNT-based detectors can be made by our nanomanufacturing process. And the sensitivity of the detectors at a special wavelength can be achieved by selecting and controlling the bandgap of CNTs during the process. Besides, a readout circuitry has been integrated with the FPA to retrieve signals from the detectors for high throughput applications
机译:红外(IR)探测器对于包括医学诊断,夜视等在内的各种应用极为重要。目前,高灵敏度IR探测器的瓶颈是进行低温冷却以降低噪声的要求。碳纳米管(CNT)表现出低的暗电流,这使CNT无需冷却即可工作。本文介绍了使用碳纳米管的非低温冷却红外焦平面阵列(FPA)的开发。 FPA由一系列基于CNT的红外探测器组成,这些探测器在室温下对红外信号敏感。基于CNT的探测器可以通过我们的纳米制造工艺来制造。通过在过程中选择和控制CNT的带隙,可以实现特定波长探测器的灵敏度。此外,读出电路已与FPA集成在一起,可从检测器中检索信号以用于高通量应用

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