DocumentCode :
972637
Title :
Mid-infrared phase modulation via Stark effect on intersubband transitions in GaAs/GaAlAs quantum wells
Author :
Dupont, Emmanuel B. ; Delacourt, Dominique ; Papuchon, Michel
Author_Institution :
THOMSON-CSF, Orsay, France
Volume :
29
Issue :
8
fYear :
1993
fDate :
8/1/1993 12:00:00 AM
Firstpage :
2313
Lastpage :
2318
Abstract :
Mid-infrared (~10 μm) electrorefractive effects of intersubband transitions in step GaAs/GaAlAs quantum wells are experimentally analyzed. A method for studying infrared electrorefraction of a two-dimensional structure via the Stark effect is used. The anomalous dispersion is measured over the entire spectral range of the transition and is found to be consistent with the Kramers-Kronig relations in the case of a Lorentzian absorption shape. A solution of Maxwell´s equations in the multiquantum well structure is detailed and leads to a good agreement with experimental data. A standard interferometer and a lock-in technique allow a quasi-direct determination of phase and amplitude modulation with very good sensitivity. A theoretical approach based on a Lorentzian model and the solution of Maxwell´s equations for a multiple QW (quantum well) structure agreed well with the data
Keywords :
III-V semiconductors; Kramers-Kronig relations; Stark effect; aluminium compounds; amplitude modulation; electro-optical effects; gallium arsenide; light refraction; optical dispersion; optical modulation; phase modulation; semiconductor quantum wells; 10 micron; 2D structure; GaAs-GaAlAs; Kramers-Kronig relations; Lorentzian absorption shape; Lorentzian model; Maxwell´s equations; Stark effect; amplitude modulation; anomalous dispersion; electrorefractive effects; infrared electrorefraction; intersubband transitions; lock-in technique; mid IR; multiquantum well structure; phase modulation; quantum wells; quasi-direct determination; semiconductors; sensitivity; spectral range; standard interferometer; step SQW; Diodes; Electromagnetic wave absorption; Gallium arsenide; Infrared spectra; Laser beams; Oscillators; Phase modulation; Polarization; Resonance; Stark effect;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/3.245560
Filename :
245560
Link To Document :
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