DocumentCode :
784963
Title :
Effect of well width on three-color quantum dots-in-a-well infrared detectors
Author :
Ariyawansa, G. ; Perera, A.G.U. ; Raghavan, G.S. ; von Winckel, G. ; Stintz, A. ; Krishna, S.
Author_Institution :
Dept. of Phys. & Astron., Georgia State Univ., Atlanta, GA, USA
Volume :
17
Issue :
5
fYear :
2005
fDate :
5/1/2005 12:00:00 AM
Firstpage :
1064
Lastpage :
1066
Abstract :
Three-color InAs-InGaAs quantum dots-in-a-well (DWELL) detectors having different well sizes are presented. Three DWELL detectors (1388, 1373, and 1299) with different quantum well (QW) widths (120, 110, and 90/spl Aring/, respectively) have been characterized showing response peaks at three distinct wavelengths. The detector 1388 has peak wavelengths at /spl sim/6.25, /spl sim/10.5, and /spl sim/23.3 μm. The two peaks at 6.25 and 10.5 μm are believed to be due to bound-to-bound transitions from the ground state in the dot to a state in the well, whereas the longer wavelength peak (/spl sim/23.3 μm) which has a detectivity of 7.9×10/sup 10/ cm/spl middot//spl radic/Hz/W at 4.6 K under -2.2-V bias is due to an intersubband transition between the dot levels. The operating wavelength of these detectors in the short wavelength region can be tailored by changing the width of the QW. Spectral responsivity curves of 1373 and 1299 show a shift of the short wavelength peaks toward decreasing wavelength while the long wavelength peak remains around /spl sim/23.3 μm confirming that the particular transition is due to the quantum dot.
Keywords :
III-V semiconductors; gallium arsenide; indium compounds; infrared detectors; photodetectors; quantum well devices; semiconductor quantum dots; 10.5 mum; 110 angstrom; 120 angstrom; 4.6 K; 6.25 mum; 90 angstrom; InAs-InGaAs; ground state; intersubband transition; spectral responsivity curves; three-color quantum dots-in-a-well infrared detectors; Carrier confinement; Dark current; Finite impulse response filter; Gallium arsenide; Indium gallium arsenide; Infrared detectors; Photodetectors; Quantum dots; Stationary state; Temperature sensors; Infrared detectors; quantum dot (QD); quantum well (QW); three color;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2005.846753
Filename :
1424101
Link To Document :
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