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XB
n
n and XB
p
p infrared detectors
P. C. Klipstein
SemiConductor Devices
Research output
:
Contribution to journal
›
Article
›
peer-review
25
Scopus citations
Overview
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n
n and XB
p
p infrared detectors'. Together they form a unique fingerprint.
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Keyphrases
GaSb
100%
Background-limited Performance
100%
Infrared Detector
100%
T2SL
100%
Long-wave Infrared
100%
Spectral Response Curve
100%
High Temperature
50%
Layer Thickness
50%
Quantum Efficiency
50%
Mid-infrared
50%
Dark Current
50%
Diffusion Limit
50%
Gallium
50%
Low Diffusion
50%
Atmospheric Window
50%
Cutoff Wavelength
50%
High Quantum Efficiency
50%
Type-II Superlattice
50%
InAsSb
50%
Barrier Detectors
50%
Generation-recombination
50%
InSb Photodiode
50%
III-V Materials
50%
Optical Transfer Matrix Method
50%
Standard Generation
50%
Full Spectral Response
50%
Barrier Device
50%
GaSb Substrate
50%
Engineering
Spectral Response
100%
Response Curve
100%
Limited Performance
100%
Quantum Efficiency
100%
Layer Thickness
50%
Cutoff Wavelength
50%
Superlattice
50%
Matrix Method
50%
Photodiode
50%
Physics
Infrared Detector
100%
Spectral Sensitivity
100%
Transfer-Matrix Method
50%
Superlattice
50%
Photodiode
50%
Dark Current
50%
Atmospherics
50%