响应度
超晶格
光电子学
探测器
红外线的
量子效率
材料科学
光电探测器
光学
光子
锑化镓
可见光谱
红外探测器
波长
砷化铟
物理
量子点
作者
Chunyan Guo,Yaoyao Sun,Zhe Jia,Zhi Jiang,Yuexi Lv,Hongyue Hao,Xi Han,Yinan Dong,Dongwei Jiang,Guowei Wang,Yingqiang Xu,Tao Wang,Jinshou Tian,Zhaoxin Wu,Zhichuan Niu
标识
DOI:10.1016/j.infrared.2017.12.020
摘要
The authors report an innovative design of wide spectrum detector that can detect visible and mid-infrared spectrum, from 0.4 to 5 μm, simultaneously. The detector is designed with microstructure of various types of photon traps fabricated on mid-infrared InAs/GaSb type-II superlattice materials. Quantum efficiency has been significantly improved due to the action of photon traps which can decrease the reflectivity of the surface of InAs/GaSb type-Ⅱ superlattice down to less than 5%. Under the condition of 77 K and 200 mV bias voltage, the responsivity of the detector is about 0.025–0.45 A/W in the visible wavelength regime of 400–790 nm, more than 0.3 A/W in spectrum of 800–2000 nm, respectively. Through the optimized photon trap structure, the responsivity of detector is to 1.25 A/W and predominantly improve the quantum efficiency of the detector up to 52.5% at 3 μm.
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