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  4. Design, Simulation and Fabrication of AlGaAs Ambient Light Detectors
 
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Design, Simulation and Fabrication of AlGaAs Ambient Light Detectors

Date Issued
2008
Date
2008
Author(s)
Lin, Tzu-Chiang
URI
http://ntur.lib.ntu.edu.tw//handle/246246/189053
Abstract
We have studied the design, simulation and fabrication of AlGaAs ambient light detectors with a spectral response highly matched to Commission Internationale de l''Eclairage (CIE) photopic luminosity function. The detectors consist of an AlxGa1-xAs PIN junction, a two-step-four-section compositional grading structure centered in the PIN junction, and a built-in filtering structure on top of the PIN junction. The PIN junction contributes to main responsivity of the detector. The compositional grading structure, inserted into the PIN junction, is used to fill the spectral response in the long wavelength range. The filtering structure is used to filter out the short wavelength photons so as to fit the short wavelength shoulder of the CIE function. The peak responsivity of the best matching detector is 0.096 A/W at 558 nm, which corresponds to 164 pA/lux in photometric unit. The CIE defined spectral mismatch index f1’ of the detector is as low as 5.8%. Numerical simulations for the detector characteristics have also been developed, whose results are in good agreements with the experimental data.
Subjects
AlGaAs
CIE
detector
simulation
Type
thesis
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ntu-97-R95943052-1.pdf

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