Photoresponse measurement of carbon nanotube based infrared photodetector using digital microscope

Liangliang Chen, N. Xi, Bo Song, Yongliang Yang, Zhiyong Sun, Zhanxin Zhou, Yu Cheng, Yirui Wu
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Abstract

The conventional infrared sensors suffer from trade off between sensitivity and cost. The bolometer infrared camera is low resolution and slow speed while the quantum photodetectors are bulky and expensive. In this paper, the novel low dimensional materials carbon nanotube based Schottky barrier structure non cryogenic IR detector was proposed to detect IR irradiance. In order to characterize the photodetector, a testing bench using digital microscope and precise linear stage was used to measure detector performance. The experimental results show the photodetector has negative direction response and positive direction response on right and left side respectively and the maximum photocurrent output depends on the IR irradiance gradient. The proposed measurement method will be applicable for 1D/2D nanoscale material based photodetector characterization.
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利用数码显微镜测量碳纳米管红外探测器的光响应
传统的红外传感器需要在灵敏度和成本之间进行权衡。红外测热仪分辨率低、速度慢,量子光电探测器体积大、价格昂贵。本文提出了一种新型的低维材料碳纳米管肖特基势垒结构非低温红外探测器,用于红外辐射检测。为了对光电探测器进行表征,利用数码显微镜和精密线性平台组成的测试平台对探测器的性能进行了测试。实验结果表明,光电探测器的左右两侧分别具有负方向响应和正方向响应,最大光电流输出取决于红外辐照度梯度。所提出的测量方法将适用于基于一维/二维纳米材料的光电探测器表征。
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