High-Performance MWIR HgCdTe on Si Substrate Focal Plane Array Development

被引:0
|
作者
R. Bommena
S. Ketharanathan
P. S. Wijewarnasuriya
N. K. Dhar
R. Kodama
J. Zhao
C. Buurma
J. D. Bergeson
F. Aqariden
S. Velicu
机构
[1] EPIR Technologies,
[2] Inc.,undefined
[3] Army Research Laboratory (ARL),undefined
[4] Night Vision and Electronic Sensor Directorate (NVESD),undefined
来源
Journal of Electronic Materials | 2015年 / 44卷
关键词
MBE; HgCdTe; MWIR; silicon; CdTe; dark current; FPA; NEDT;
D O I
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中图分类号
学科分类号
摘要
The development of low noise-equivalent differential temperature (NEDT), high-operability midwave infrared (MWIR) focal plane arrays (FPAs) fabricated from molecular beam epitaxial (MBE)-grown HgCdTe on Si-based substrates is reported. High-quality n-type MWIR HgCdTe layers with a cutoff wavelength of 4.90 μm at 77 K and a carrier concentration of 1–2 × 1015 cm−3 were grown on CdTe/Si substrates by MBE. Highly uniform composition and thickness over 3-inch areas were demonstrated, and low surface defect densities (voids ~5 × 102 cm−2, micro-defects ~5 × 103 cm−2) and etch pit density (~3.5 × 106 cm−2) were measured. This material was used to fabricate 320 × 256, 30 μm pitch FPAs with planar device architecture; arsenic implantation was used to achieve p-type doping. Radiometric and noise characterization was also performed. A low NEDT of 13.8 m K at 85 K for a 1 ms integration time with f/#2 optics was measured. The NEDT operability was 99% at 120 K with a mean dark current noise of 8.14 × 10−13 A/pixel. High-quality thermal images were obtained from the FPA up to a temperature of 150 K.
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页码:3151 / 3156
页数:5
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