High performance dual-band long-wave infrared focal plane array based on type-II InAs/GaSb superlattices

Author(s):  
Edward Kwei-wei Huang ◽  
Abbas Haddadi ◽  
Guanxi Chen ◽  
Binh-Minh Nguyen ◽  
Minh-Anh Hoang ◽  
...  
Author(s):  
S. D. Gunapala ◽  
S. B. Rafol ◽  
D. Z. Ting ◽  
A. Soibel ◽  
J. K. Liu ◽  
...  

2017 ◽  
Vol 86 ◽  
pp. 159-164 ◽  
Author(s):  
Zhi Jiang ◽  
Xi Han ◽  
Yao-Yao Sun ◽  
Chun-Yan Guo ◽  
Yue-Xi Lv ◽  
...  

Author(s):  
Zhichuan Niu ◽  
Yao-Yao Sun ◽  
Chunyan Guo ◽  
Hongyue Hao ◽  
Dongwei Jiang ◽  
...  

2016 ◽  
Vol 16 (11) ◽  
pp. 4374-4379 ◽  
Author(s):  
Jarrod Vaillancourt ◽  
Erik Blasch ◽  
Guiru Gu ◽  
Xuejun Lu ◽  
Kitt Reinhardt

2017 ◽  
Vol 67 (2) ◽  
pp. 135 ◽  
Author(s):  
P.C. Klipstein ◽  
E. Avnon ◽  
Y. Benny ◽  
A. Fraenkel ◽  
A. Glozman ◽  
...  

The XBn/XBp family of barrier detectors enables diffusion limited dark currents comparable with HgxCd1-xTe Rule-07 and high quantum efficiencies. SCD’s XBp type II superlattice (T2SL) detector contains InAs/GaSb and InAs/AlSb T2SLs, and was designed for the long wave infrared (LWIR) atmospheric window using k · p based modeling of the energy bands and photo-response. Wafers are grown by molecular beam epitaxy and are fabricated into focal plane array (FPA) detectors using standard FPA processes, including wet and dry etching, indium bump hybridisation, under-fill, and back-side polishing. The 640 × 512 pixel, 15 μm pitch, detector goes by the name of ‘Pelican-D LW’ and exhibits a quantum efficiency of ~ 50 per cent with background limited performance at an operating temperature of 77 K. It has a cut-off wave length of ~ 9.5 μm, with a pixel operability of above 99 per cent. The detector gives a very stable image with a residual non uniformity of below 0.04 per cent over its useful dynamic range. A new digital read-out integrated circuit has been designed so that the complete detector closely follows the configuration of SCD’s MWIR Pelican-D detector.


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