响应度
光电流
吸收(声学)
探测器
量子效率
红外线的
光电子学
材料科学
级联
光学
量子阱红外探测器
红外探测器
量子阱
原子物理学
物理
凝聚态物理
化学
色谱法
激光器
作者
Kai Guo,Yixuan Zhu,Kun Li,Junqi Liu,Shenqiang Zhai,Shuman Liu,Ning Zhuo,Jinchuan Zhang,Lijun Wang,Fengqi Liu,Xiaohua Wang,Zhipeng Wei
摘要
We report a very long wave (14 μm) infrared quantum cascade detector based on a twin-well coupled absorption region operating at temperatures up to 130 K. By introducing two coupled absorption quantum wells that have the same width, the absorption strength and responsivity of the detector are increased relative to the single-well design. At 77 K, we observe a responsivity of 4.06 mA/W at zero bias, which is 4.27 times that of the single-well counterpart. The responsivity is further optimized for reverse bias operation, so that the obstruction of space charge field to electron transport is compensated. The photocurrent reaches a maximum value at 77 K for an applied bias of −1.3 V, and responsivity as high as 23.76 mA/W, which is 5.85 times that under zero bias, is obtained.
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